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strain species date region country location host group collector authors title journal paper url
14.0008 Pst 19/05/2014 Europe Austria Groß-Enzersdorf Sax PstS7 Susanne Kirchmaier Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0009 Pst 22/05/2014 Europe Austria Gießhübl Sax PstS7 Susanne Kirchmaier Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0095 Pst 02/06/2014 Europe Belgium Koksijde JB Asano PstS10 Yves Decroos Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0096 Pst 02/06/2014 Europe Belgium Zwevegem JB Asano PstS10 Yves Decroos Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0097 Pst 02/06/2014 Europe Belgium Tiegem JB Asano PstS10 Yves Decroos Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0098 Pst 02/06/2014 Europe Belgium Mignault Torch PstS7 Yves Decroos Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0069 Pst 11/06/2014 Europe Bulgaria Novi Han Enola PstS7 Todor Manslov Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
15.0596 Pst 21/07/2015 North America Canada Lethbridge, Alberta GYT3-190 DN Other Harpinder S. Randhawa Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0597 Pst 21/07/2015 North America Canada Lethbridge, Alberta Morocco FF-B Other Harpinder S. Randhawa Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0604 Pst 21/07/2015 North America Canada Lethbridge, Alberta Penhold Other Harpinder S. Randhawa Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0606 Pst 21/07/2015 North America Canada Lacombe, Alberta HY2047 Other Harpinder S. Randhawa Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0608 Pst 21/07/2015 North America Canada St. Albert, Alberta HY2042 Other Harpinder S. Randhawa Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0609 Pst 21/07/2015 North America Canada Lacombe, Alberta Yr31 Other Harpinder S. Randhawa Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
Chile_18 Pst 24/11/2014 South America Chile Santa Rosa Fito1401-87 cv. Pantera Other Ricardo Madariaga Burrows Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
Chile_3 Pst 24/11/2014 South America Chile Santa Rosa Onix Other Ricardo Madariaga Burrows Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
Chile_30 Pst 06/12/2014 South America Chile Cajon Taita Other Ricardo Madariaga Burrows Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
Chile_31 Pst 07/12/2014 South America Chile Los Tilos Fito 1404-15 Other Ricardo Madariaga Burrows Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
Chile_4 Pst 24/11/2014 South America Chile Santa Rosa Onix Other Ricardo Madariaga Burrows Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
15.0573 Pst July 2015 Asia China unknown Unknown Other Suomeng Song Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0574 Pst July 2015 Asia China unknown Unknown Other Suomeng Song Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0579 Pst July 2015 Asia China unknown Unknown Other Suomeng Song Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0782 Pst 26/11/2016 Asia China Nanhu, Jiaxing Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0783 Pst 26/11/2016 Asia China Nanhu, Jiaxing Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0786 Pst 26/11/2016 Asia China Nanhu, Jiaxing Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0787 Pst 26/11/2016 Asia China Nanhu, Jiaxing Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0788 Pst 27/11/2016 Asia China Pingnan, Guizhou Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0789 Pst 27/11/2016 Asia China Pingnan, Guizhou Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0790 Pst 27/11/2016 Asia China Pingnan, Guizhou Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0791 Pst 27/11/2016 Asia China Pingnan, Guizhou Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0793 Pst 27/11/2016 Asia China Pingnan, Guizhou Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0794 Pst 28/11/2016 Asia China Pingnan, Guizhou Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0796 Pst 28/11/2016 Asia China Jinshan, Gangu Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0797 Pst 28/11/2016 Asia China Jinshan, Gangu Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0798 Pst 28/11/2016 Asia China Jinshan, Gangu Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0799 Pst 28/11/2016 Asia China Jinshan, Gangu Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0800 Pst 28/11/2016 Asia China Jinshan, Gangu Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0801 Pst 28/11/2016 Asia China Jinshan, Gangu Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0802 Pst 28/11/2016 Asia China Jinshan, Gangu Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0803 Pst 28/11/2016 Asia China Jinshan, Gangu Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0804 Pst 28/11/2016 Asia China Jinshan, Gangu Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0189 Pst 2017 Asia China unknown Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0190 Pst 2017 Asia China unknown Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0191 Pst 2017 Asia China unknown Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0192 Pst 2017 Asia China unknown Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0193 Pst 2017 Asia China unknown Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0194 Pst 2017 Asia China unknown Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0197 Pst 2017 Asia China unknown Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0203 Pst 2017 Asia China unknown Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0204 Pst 2017 Asia China unknown Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0207 Pst 2017 Asia China unknown Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0208 Pst 2017 Asia China unknown Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
14.0001 Pst 21/05/2014 Europe Croatia Osijek Unknown PstS7 Novosevovie Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0011 Pst 13/05/2014 Europe Croatia unknown Unknown PstS7 Alison Bentley Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0002 Pst 12/06/2014 Europe Czech Republic Rokytnice Tilman PstS7 Vaclav Sklenar Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0059 Pst 19/06/2014 Europe Czech Republic Olomouc Perenial grass PstS7 Ruth Bryant Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0060 Pst 19/06/2014 Europe Czech Republic Olomouc NIC08-108 PstS7 Ruth Bryant Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0061 Pst 19/06/2014 Europe Czech Republic Olomouc Turandot Baryton cross PstS7 Ruth Bryant Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0029 Pst 16/05/2014 Africa Ethiopia Kulumsa, Oromia Unknown Other Dave Hodson Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0030 Pst 16/05/2014 Africa Ethiopia Kulumsa, Oromia Unknown Other Dave Hodson Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0236 Pst 01/12/2014 Africa Ethiopia Sinana Unknown Other Dave Hodson Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0238 Pst 01/12/2014 Africa Ethiopia Sinana Hidase Other Dave Hodson Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0239 Pst 01/12/2014 Africa Ethiopia Sinana Henkolo Other Dave Hodson Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0240 Pst 01/12/2014 Africa Ethiopia Sinana Sanate Other Dave Hodson Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
16.0774 Pst 05/12/2016 Africa Ethiopia Sinana Hoggana Other Ayele and Bekele Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0775 Pst 05/12/2016 Africa Ethiopia Sinana Digalu Other Ayele and Bekele Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0776 Pst 05/12/2016 Africa Ethiopia Sinana Millenium Other Ayele and Bekele Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0779 Pst 05/12/2016 Africa Ethiopia Sinana SPPSN#15 Other Ayele and Bekele Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
14.0004 Pst 16/06/2014 Europe France Marchelepot Glasgow PstS10 J-C Talbourdet Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0005 Pst 16/06/2014 Europe France Marchelepot Trapez PstS10 J-C Talbourdet Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0006 Pst 16/06/2014 Europe France Marchelepot Bergoumo PstS10 J-C Talbourdet Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0007 Pst 10/06/2014 Europe France Pontfaverger Trapez PstS10 Briard Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0014 Pst 02/06/2014 Europe France Gourhel Altigo PstS10 Grellier Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0015 Pst 04/06/2014 Europe France Guegon Expert PstS7 Grellier Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0016 Pst 04/06/2014 Europe France Loyat Alixan PstS10 Grellier Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0046 Pst 25/06/2014 Europe France Bucy-Saint-Liphard Hysun PstS10 Hamon Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0047 Pst 25/06/2014 Europe France Bucy-Saint-Liphard Karur PstS10 Hamon Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0062 Pst 23/06/2014 Europe France Druelle Unknown Triticale Triticale Ruth Bryant Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0094 Pst 03/06/2014 Europe France Nangis, Seine-et-Marne Rosario PstS10 Bazelaine Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0108 Pst 11/06/2014 Europe France unknown Unknown Durum Wheat PstS10 Claude Pope Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
15.0188 Pst 04/06/2015 Europe France Castanet Triticale Orleac Triticale J P Legoff Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0189 Pst 04/06/2015 Europe France Castanet Triticale Ragtac Triticale J P Legoff Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0190 Pst 04/06/2015 Europe France Castanet Triticale Tarzan Triticale J P Legoff Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0191 Pst 04/06/2015 Europe France Castanet Triticale Fido Triticale J P Legoff Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
FW1 Pst 2013 Europe France unknown Unknown France 1988-2013 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
15.0095 Pst 18/05/2015 Europe France Louville Oakley Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
15.0383 Pst 03/06/2015 Europe France Saultain Solstice Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
16.0606 Pst 08/06/2016 Europe France Allonnes Oakley Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
16.0607 Pst 08/06/2016 Europe France Allonnes Oakley Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
14.0035 Pst 10/06/2014 Europe Germany Moselsürsch Akteur PstS10 Prochnow: Rosie Bryson Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0036 Pst 13/06/2014 Europe Germany Etzdorf JB Asano PstS10 Prochnow: Rosie Bryson Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0037 Pst 13/06/2014 Europe Germany Etzdorf Kometus PstS10 Prochnow: Rosie Bryson Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0039 Pst 16/06/2014 Europe Germany Hingste Opal PstS10 Prochnow: Rosie Bryson Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0040 Pst 16/06/2014 Europe Germany Hingste Akteur PstS10 Prochnow: Rosie Bryson Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0041 Pst 16/06/2014 Europe Germany Hingste Inokluiert Contur PstS10 Prochnow: Rosie Bryson Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0042 Pst 17/06/2014 Europe Germany Dunau Loft PstS10 Prochnow: Rosie Bryson Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0043 Pst 23/06/2014 Europe Germany Grucking JB Asano PstS10 Prochnow: Rosie Bryson Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0044 Pst 23/06/2014 Europe Germany Kirchmatting Akteur PstS10 Prochnow: Rosie Bryson Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0078 Pst 04/06/2014 Europe Germany Ruchheim Victo Cluster 3 (Hubbard et al., 2015) A. Resweber Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0079 Pst 17/06/2014 Europe Germany Böhl Bauch 10 Unknown PstS10 A. Resweber Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0080 Pst 17/06/2014 Europe Germany Ruchheim Victo Other A. Resweber Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0081 Pst 13/05/2014 Europe Germany Gommershoven JB Asano PstS10 Prochnow Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0084 Pst 28/05/2014 Europe Germany Groitzsch Kometus PstS10 Prochnow Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0085 Pst 03/06/2014 Europe Germany Groitzsch Akteur PstS10 Prochnow Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0086 Pst 03/06/2014 Europe Germany Weißensee Ritmo PstS10 Prochnow Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0087 Pst 03/06/2014 Europe Germany Weißensee JB Asano PstS10 Prochnow Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0088 Pst 03/06/2014 Europe Germany Weißensee Akteur PstS10 Prochnow Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0089 Pst 04/06/2014 Europe Germany Dechenhausen Kometus PstS10 Prochnow Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0090 Pst 05/06/2014 Europe Germany Hottendorf Hermann PstS10 Prochnow Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0091 Pst 05/06/2014 Europe Germany Hottendorf Kometus PstS10 Prochnow Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0115 Pst July 2014 Europe Germany Werbig Rye Triticale Viktor Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0120 Pst July 2014 Europe Germany Werbig Rye Triticale Viktor Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0083 Pst 28/05/2014 Europe Germany Böhl-Iggelheim Akteur Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
15.0398 Pst 09/06/2015 Europe Germany Hemmingen Solstice Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
14.0076 Pst 21/05/2014 Europe Italy Ozzano, Bologna Massari PstS7 A. Resweber Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0077 Pst 21/05/2014 Europe Italy Conselice Irnerio Triticale A. Resweber Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14/K10 Pst 2014 Africa Kenya unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/K11 Pst 2014 Africa Kenya unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/K12 Pst 2014 Africa Kenya unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/K13 Pst 2014 Africa Kenya unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/K14 Pst 2014 Africa Kenya unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/K15 Pst 2014 Africa Kenya unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/K2 Pst 2014 Africa Kenya unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/K4 Pst 2014 Africa Kenya unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/K5 Pst 2014 Africa Kenya unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/K6 Pst 2014 Africa Kenya unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/K7 Pst 2014 Africa Kenya unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/K8 Pst 2014 Africa Kenya unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/K9 Pst 2014 Africa Kenya unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
18.0169 Pst 04/11/2018 Africa Lesotho unknown Unknown Triticum aestivum Unknown Boshoff et al., 2020 First Report of Puccinia striiformis f. sp. tritici, Causing Stripe Rust of Wheat, in Zimbabwe Plant Disease https://doi.org/10.1094/PDIS-07-19-1395-PDN
06/01 Pst 2006 Oceania New Zealand unknown Sy Epson Other Richard Oliver Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
11/03 Pst November 2011 Oceania New Zealand Darfield Morph Other Richard Oliver Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
12/08 Pst 2012 Oceania New Zealand unknown Unknown Other Richard Oliver Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
12/12 Pst November 2012 Oceania New Zealand Lincoln Unknown Other Richard Oliver Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
ATR-1 Pst 13/05/2014 Asia Pakistan Attarshisha Unknown Other Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
ATR-2 Pst 13/05/2014 Asia Pakistan Attarshisha Unknown Other Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
ATR-3 Pst 13/05/2014 Asia Pakistan Attarshisha Unknown Other Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
Qld-1 Pst 16/05/2014 Asia Pakistan Abbottabad Unknown Other Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
Qld-2 Pst 16/05/2014 Asia Pakistan Abbottabad Unknown Other Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
Qld-3 Pst 16/05/2014 Asia Pakistan Qalandarabad Unknown Other Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0010 Pst 22/05/2014 Europe Poland Choryn Unknown Triticale Zofia Banaszak Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0024 Pst 05/06/2014 Europe Poland Kwidzyn Kobra PstS10 Marcin Lanski Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0025 Pst 05/06/2014 Europe Poland Kwidzyn Arkadia PstS8 Marcin Lanski Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0026 Pst 06/06/2014 Europe Poland Sroda Wielko Legenda PstS7 Szymon Laczny Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0027 Pst 06/06/2014 Europe Poland Sroda Wielko Princeps PstS8 Szymon Laczny Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
15.0409 Pst 15/06/2015 Europe Poland Jaroslawiec KWS Magic PstS8 Szymon Laczny Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
14.0099 Pst 24/05/2014 Europe Romania unknown Unknown PstS7 Dario Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
23.0001 Pst 08/05/2023 Europe Serbia Rimski sancevi NS 3-9316 Other Radivoje Jevtic
23.0002 Pst 08/05/2023 Europe Serbia Rimski sancevi Natasa Other Radivoje Jevtic
23.0003 Pst 09/05/2023 Europe Serbia Rimski sancevi Zvezdana Other Radivoje Jevtic
23.0004 Pst 03/05/2023 Europe Serbia Suljam Pobeda Other Radivoje Jevtic
23.0005 Pst 05/05/2023 Europe Serbia Nikinci Simonida Other Radivoje Jevtic
23.0006 Pst 27/04/2023 Europe Serbia Turija Zvezdana Other Radivoje Jevtic
23.0007 Pst 27/04/2023 Europe Serbia Srbobran Igra Other Radivoje Jevtic
23.0008 Pst 27/04/2023 Europe Serbia Turija Zvezdana Other Radivoje Jevtic
23.0009 Pst 27/04/2023 Europe Serbia Turija NS Obala Other Radivoje Jevtic
23.0011 Pst 13/05/2023 Europe Serbia Obrenovac Simonida Other Radivoje Jevtic
23.0012 Pst 13/05/2023 Europe Serbia Mrđenovac LG Apilco Other Radivoje Jevtic
23.0013 Pst 18/05/2023 Europe Serbia Rimski sancevi Zvezdana Other Radivoje Jevtic
23.0014 Pst 08/05/2023 Europe Serbia Rimski sancevi Odisej Triticale Radivoje Jevtic
23.0015 Pst 18/05/2023 Europe Serbia Rimski sancevi NS Obala Other Radivoje Jevtic
23.0016 Pst 18/05/2023 Europe Serbia Rimski sancevi CD 42 Triticale Radivoje Jevtic
23.0017 Pst 18/05/2023 Europe Serbia Rimski sancevi ST 80 Triticale Radivoje Jevtic
23.0018 Pst 18/05/2023 Europe Serbia Rimski sancevi CD 38 Triticale Radivoje Jevtic
23.0019 Pst 18/05/2023 Europe Serbia Rimski sancevi CD 75 Triticale Radivoje Jevtic
23.0031 Pst 2023 Europe Serbia unknown Unknown Other
23.0033 Pst 2023 Europe Serbia unknown Unknown Other
23.0036 Pst 2023 Europe Serbia unknown Unknown Other
23.0039 Pst 2023 Europe Serbia unknown Unknown Other
14.0103 Pst 24/05/2014 Europe Serbia unknown Unknown PstS7 Dario Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
23.0010 Pst 13/05/2023 Europe Serbia Obrenovac NS Obala Other Radivoje Jevtic
23.0020 Pst 18/05/2023 Europe Serbia Rimski sancevi CD 241 Triticale Radivoje Jevtic
23.0021 Pst 23/05/2022 Europe Serbia Rimski sancevi Bambi Other Radivoje Jevtic
23.0022 Pst 23/05/2022 Europe Serbia Rimski sancevi NS Karnak Triticale Radivoje Jevtic
23.0023 Pst 23/05/2022 Europe Serbia Rimski sancevi NS40S Other Radivoje Jevtic
23.0024 Pst 23/05/2022 Europe Serbia Rimski sancevi Pobeda Other Radivoje Jevtic
23.0025 Pst 23/05/2022 Europe Serbia Rimski sancevi Nirvana Spelta Radivoje Jevtic
23.0026 Pst 23/05/2022 Europe Serbia Rimski sancevi Dolap Other Radivoje Jevtic
23.0027 Pst 23/05/2022 Europe Serbia Rimski sancevi NS Obala Other Radivoje Jevtic
23.0028 Pst 23/05/2022 Europe Serbia Rimski sancevi NS 54-20 Other Radivoje Jevtic
14.0092 Pst 26/05/2014 Europe Slovakia Detva Unknown PstS7 Andrea Hanková Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0093 Pst 26/05/2014 Europe Slovakia Detva Unknown PstS7 Andrea Hanková Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
16.0771 Pst 18/10/2016 Africa South Africa Napier Unknown Triticale Driecus Lesch Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0772 Pst 18/10/2016 Africa South Africa Napier Unknown Triticale Driecus Lesch Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
13/SAZP1 Pst 2013 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/SADL1 Pst 23/08/2014 Africa South Africa Ouplaas Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/SADL2 Pst 23/08/2014 Africa South Africa Ouplaas Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/SADL3 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/SADL4 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/SADL5 Pst 04/09/2014 Africa South Africa Bredasdorp Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/SADL6 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/SATT1 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/SATT2 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/SATT3 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/SATT4 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/SATT5 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/SAZP2 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
14/SAZP3 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
15/SAZP1 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
15/SAZP10 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
15/SAZP11 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
15/SAZP12 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
15/SAZP2 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
15/SAZP3 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
15/SAZP4 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
15/SAZP5 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
15/SAZP6 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
15/SAZP7 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
15/SAZP8 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
15/SAZP9 Pst 2015 Africa South Africa unknown Unknown Triticum aestivum Unknown van Schalkwyk et al., 2021 Pathogenomic analyses of Puccinia striiformis f. sp. tritici supports a close genetic relationship between South and East Africa Plant Pathology (2) https://doi.org/10.1111/ppa.13468
18.0167 Pst 25/05/2018 Africa South Africa Bloemfontein JIC871 Triticum aestivum Unknown Boshoff et al., 2020 First Report of Puccinia striiformis f. sp. tritici, Causing Stripe Rust of Wheat, in Zimbabwe Plant Disease https://doi.org/10.1094/PDIS-07-19-1395-PDN
18.0171 Pst 04/11/2018 Africa South Africa Western Cape Palmiet Triticum aestivum Unknown Boshoff et al., 2020 First Report of Puccinia striiformis f. sp. tritici, Causing Stripe Rust of Wheat, in Zimbabwe Plant Disease https://doi.org/10.1094/PDIS-07-19-1395-PDN
18.0172 Pst 04/11/2018 Africa South Africa Sutherland Wild Rye Secale cereale Unknown Boshoff et al., 2020 First Report of Puccinia striiformis f. sp. tritici, Causing Stripe Rust of Wheat, in Zimbabwe Plant Disease https://doi.org/10.1094/PDIS-07-19-1395-PDN
18.0173 Pst 04/11/2018 Africa South Africa Free State Unknown Triticum aestivum Unknown Boshoff et al., 2020 First Report of Puccinia striiformis f. sp. tritici, Causing Stripe Rust of Wheat, in Zimbabwe Plant Disease https://doi.org/10.1094/PDIS-07-19-1395-PDN
18.0175 Pst 04/11/2018 Africa South Africa Free State Hugenoot Triticum aestivum Unknown Boshoff et al., 2020 First Report of Puccinia striiformis f. sp. tritici, Causing Stripe Rust of Wheat, in Zimbabwe Plant Disease https://doi.org/10.1094/PDIS-07-19-1395-PDN
18.0177 Pst 04/11/2018 Africa South Africa Northern Cape Unknown Triticum aestivum Unknown Boshoff et al., 2020 First Report of Puccinia striiformis f. sp. tritici, Causing Stripe Rust of Wheat, in Zimbabwe Plant Disease https://doi.org/10.1094/PDIS-07-19-1395-PDN
14.0072 Pst 03/07/2014 Europe Spain Garinoain Trigo camargo PstS7 Pedro Liberol Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
15.0078 Pst 07/05/2015 Europe Sweden Osterlen Primus PstS8 Tina Henriksson Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0182 Pst 25/05/2016 Europe Sweden Svalov Kranich PstS8 Tina Henriksen Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0183 Pst 26/05/2016 Europe Sweden Svalov Hereford PstS8 Tina Henriksen Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0186 Pst 26/05/2016 Europe Sweden Svalov Linus PstS8 Tina Henriksen Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0028 Pst 30/05/2017 Europe Sweden Sanby Linz PstS8 Tina Henriksson Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0029 Pst 30/05/2017 Europe Sweden Sanby Linz PstS8 Tina Henriksson Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0030 Pst 02/06/2017 Europe Sweden Svalov Kranich PstS8 Tina Henriksson Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0031 Pst 02/06/2017 Europe Sweden Svalov Norin PstS8 Tina Henriksson Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0089 Pst 15/06/2017 Europe Sweden Svalov Kranich PstS8 Tina Henriksson Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0090 Pst 15/06/2017 Europe Sweden Svalov 555012 PstS8 Tina Henriksson Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
14.0101 Pst 24/05/2014 Asia Turkey unknown Unknown PstS7 Dario Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
17.0286 Pst 2017 Europe UK unknown Unknown Other Unknown Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
13/22 Pst 13/06/2013 Europe UK Boothby Graffoe, Lincolnshire Solstice PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/23 Pst 13/06/2013 Europe UK Boothby Graffoe, Lincolnshire KWS Santiago Cluster 3 (Hubbard et al., 2015) Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/24 Pst 13/06/2013 Europe UK Boothby Graffoe, Lincolnshire KWS Kielder PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/25 Pst 13/06/2013 Europe UK Boothby Graffoe, Lincolnshire KWS Dali PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/26 Pst 12/06/2013 Europe UK Cirencester, Gloucestershire Horatio PstS7 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/27 Pst 12/06/2013 Europe UK Cirencester, Gloucestershire Oakley PstS7 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/28 Pst 12/06/2013 Europe UK Cirencester, Gloucestershire Solstice PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/29 Pst 14/06/2013 Europe UK Oxfordshire Solstice PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/32 Pst 14/06/2013 Europe UK Welbourne, Lincolnshire ReR04 PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/33 Pst 14/06/2013 Europe UK Welbourne, Lincolnshire Recital Cluster 3 (Hubbard et al., 2015) Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/34 Pst 14/06/2013 Europe UK Welbourne, Lincolnshire ReR32 PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/35 Pst 14/06/2013 Europe UK Welbourne, Lincolnshire ReR64 PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/36 Pst 14/06/2013 Europe UK Welbourne, Lincolnshire Allez-Y PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/37 Pst 14/06/2013 Europe UK Welbourne, Lincolnshire ReR110 PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/38 Pst 14/06/2013 Europe UK Welbourne, Lincolnshire ReR138 Cluster 3 (Hubbard et al., 2015) Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/39 Pst 14/06/2013 Europe UK Welbourne, Lincolnshire Toisandor PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
78/66 Pst 1978 Europe UK unknown Unknown UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
03/07 Pst 2003 Europe UK unknown Brock UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
11/08 Pst 2011 Europe UK Lincolnshire Warrior UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
11/128 Pst 2011 Europe UK unknown Unknown UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
11/13 Pst 2011 Europe UK unknown Unknown UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
11/140 Pst 2011 Europe UK Bedfordshire KWS Sterling UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/12 Pst 05/06/2013 Europe UK Caythorpe, Lincolnshire RW41088 PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/120 Pst 03/07/2013 Europe UK Caythorpe, Lincolnshire Ambition PstS7 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/123 Pst 03/07/2013 Europe UK Boston, Lincolnshire Ambition PstS7 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/14 Pst 05/06/2013 Europe UK Boston, Lincolnshire Ambition PstS7 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/15 Pst 05/06/2013 Europe UK Mendlesham, Suffolk Oakley PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/18 Pst 05/06/2013 Europe UK Mendlesham, Suffolk Torch PstS7 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/182 Pst 2013 Europe UK Unknown KWS196 PstS7 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/19 Pst 05/06/2013 Europe UK Mendlesham, Suffolk Crusoe Cluster 3 (Hubbard et al., 2015) Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/20 Pst 06/06/2013 Europe UK Sutton Scotney, Hampshire LGW56 (Panacea) PstS7 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/21 Pst 2013 Europe UK Terrington St Clement, Norfolk KWS Rowan PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/30 Pst 14/06/2013 Europe UK Welbourne, Lincolnshire Solstice Cluster 3 (Hubbard et al., 2015) Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/40 Pst 14/06/2013 Europe UK Welbourne, Lincolnshire Fairplay PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/42 Pst 14/06/2013 Europe UK Welbourne, Lincolnshire Audace Cluster 3 (Hubbard et al., 2015) Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/52 Pst 07/07/2013 Europe UK NIAB HQ, Cambridgeshire Warrior PstS7 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/65 Pst 18/06/2013 Europe UK Cambridgeshire Claire PstS7 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/71 Pst 19/06/2013 Europe UK Headley Hall, North Yorkshire Laurier PstS10 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
14.0017 Pst 21/02/2014 Europe UK Sutton Scotney, Hampshire Victo PstS10 Amelia Hubbard Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0018 Pst 21/02/2014 Europe UK Sutton Scotney, Hampshire Oakley PstS10 Amelia Hubbard Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0019 Pst 07/03/2014 Europe UK unknown Panorama PstS10 Amelia Hubbard Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0020 Pst 07/03/2014 Europe UK unknown Target PstS10 Amelia Hubbard Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0021 Pst 18/03/2014 Europe UK unknown Unknown Spreader PstS10 Amelia Hubbard Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0023 Pst 2014 Europe UK unknown Cocoon PstS10 Amelia Hubbard Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0105 Pst 13/06/2014 Europe UK Morley, Norfolk Kranich PstS10 James Brown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0126 Pst June 2014 Europe UK Bridgend Vuka PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0127 Pst July 2014 Europe UK unknown Vuka PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0128 Pst August 2014 Europe UK Bishop Burton, East Yorkshire Vuka PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0129 Pst 23/06/2014 Europe UK Broughton, Hampshire Panacea PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0135 Pst 23/06/2014 Europe UK Humbie, East Lothian KWS Kielder PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0139 Pst 23/06/2014 Europe UK Wolferton, Norfolk Jorvik PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0140 Pst 23/06/2014 Europe UK Humbie, East Lothian LGW65 (Energise) PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0141 Pst 23/06/2014 Europe UK Wolferton, Norfolk KWS Santiago Cluster 3 (Hubbard et al., 2015) Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0142 Pst 23/06/2014 Europe UK Humbie, East Lothian JB Diego PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0145 Pst 28/04/2014 Europe UK York, North Yorkshire Solstice PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0146 Pst 28/04/2014 Europe UK York, North Yorkshire KWS Kielder PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0148 Pst 01/04/2014 Europe UK Morley, Norfolk Victo PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0151 Pst 23/01/2014 Europe UK Caythorpe, Lincolnshire Oakley PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0152 Pst 23/01/2014 Europe UK Caythorpe, Lincolnshire Victo PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0153 Pst 13/01/2014 Europe UK Titchmarsh, Northamptonshire Claire PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0155 Pst December 2013 Europe UK Wallingford, Oxfordshire KWS Kielder PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0158 Pst 23/01/2014 Europe UK Streatley Solstice PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0159 Pst 23/01/2014 Europe UK Caythorpe, Lincolnshire Claire PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0160 Pst 23/01/2014 Europe UK Caythorpe, Lincolnshire Robigus PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0163 Pst 23/05/2014 Europe UK Canterbury, Kent Cordiale PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0165 Pst 23/05/2014 Europe UK Canterbury, Kent Solstice PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0166 Pst 06/05/2014 Europe UK Caythorpe, Lincolnshire Solstice PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0167 Pst 06/05/2014 Europe UK Caythorpe, Lincolnshire Robigus PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0169 Pst 16/05/2014 Europe UK unknown Ambition PstS7 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0172 Pst 13/05/2014 Europe UK Great Dunmow Scout PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0173 Pst 08/05/2014 Europe UK Cambridgeshire Kranich PstS7 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0174 Pst 16/05/2014 Europe UK Sturminster, Dorset Solstice PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0175 Pst 23/05/2014 Europe UK Canterbury, Kent Claire PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0176 Pst 16/05/2014 Europe UK Keisby, Lincolnshire Belvoir PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0179 Pst 23/05/2014 Europe UK Canterbury, Kent KWS Sterling PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0180 Pst 23/05/2014 Europe UK Canterbury, Kent Robigus PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0181 Pst 06/05/2014 Europe UK Headley Hall, North Yorkshire Oakley PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0182 Pst 23/05/2014 Europe UK Royston, Cambridgeshire Oakley PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0183 Pst 23/05/2014 Europe UK Canterbury, Kent Oakley PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0188 Pst 16/05/2014 Europe UK unknown Kranich PstS7 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0190 Pst 23/05/2014 Europe UK Canterbury, Kent Warrior PstS7 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0191 Pst 06/05/2014 Europe UK Caythorpe, Lincolnshire Oakley PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0193 Pst 23/05/2014 Europe UK Canterbury, Kent Relay PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0195 Pst May 2014 Europe UK Fulbourn, Cambridgeshire Galiant PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0203 Pst 02/06/2014 Europe UK Sutton Scotney, Hampshire KWS Sterling PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0205 Pst May 2014 Europe UK Morley, Norfolk Solstice PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0210 Pst 02/06/2014 Europe UK Headley Hall, North Yorkshire Relay PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0215 Pst May 2014 Europe UK Morley, Norfolk Warrior PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0216 Pst May 2014 Europe UK Morley, Norfolk Oakley PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0218 Pst 2014 Europe UK Morley, Norfolk Cordiale PstS10 Unknown Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0225 Pst 13/08/2014 Europe UK Cascob, Powys AC Barrie PstS10 Rosemary Bayles Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0226 Pst 13/08/2014 Europe UK Cascob, Powys AC Barrie PstS10 Rosemary Bayles Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
14.0227 Pst 13/08/2014 Europe UK Cascob, Powys AC Barrie PstS10 Rosemary Bayles Bueno-Sancho et al., 2017 Pathogenomic Analysis of Wheat Yellow Rust Lineages Detects Seasonal Variation and Host Specificity Genome Biol Evol (12), 3282-3296 (2017) https://academic.oup.com/gbe/article/9/12/3282/4644453
CL1 Pst 06/06/2013 Europe UK Rockland St Mary, Norfolk Unknown Triticale Triticale Clare Lewis Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
RB1 Pst 2014 Europe UK Cambridgeshire Oakley PstS7 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
RB2 Pst 2014 Europe UK Cambridgeshire Torch PstS7 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
T13/1 Pst 26/06/2013 Europe UK Headley Hall, North Yorkshire Triticale Phidahlia Triticale Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
T13/2 Pst 05/07/2013 Europe UK Wareham, Dorset Triticale Amarillo Triticale Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
T13/3 Pst 05/07/2013 Europe UK Wool, Dorset Triticale Bennette Triticale Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
13/09 Pst 29/05/2013 Europe UK Caythorpe, Lincolnshire Oakley Cluster 3 (Hubbard et al., 2015) Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
15.0040 Pst 24/04/2015 Europe UK Cambridge KWS Santiago Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
15.0104 Pst 11/05/2015 Europe UK Adisham KWS Santiago Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
15.0123 Pst 18/05/2015 Europe UK Dereham Oakley Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
15.0124 Pst 18/05/2015 Europe UK Mersea KWS Santiago Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
15.0128 Pst 18/05/2015 Europe UK Otley KWS Santiago Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
15.0130 Pst 18/05/2015 Europe UK Wattisham KWS Santiago Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
15.0233 Pst 01/06/2015 Europe UK Newton KWS Santiago Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
15.0386 Pst 08/06/2015 Europe UK Whittlesford KWS Santiago Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
15.0388 Pst 10/06/2015 Europe UK Glenrothes Solstice Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
15.0404 Pst 25/06/2015 Europe UK Melton Mowbray KWS Santiago Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
15.0406 Pst 25/06/2015 Europe UK Melton Mowbray Solstice Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
15.0417 Pst 18/06/2015 Europe UK Newton KWS Santiago Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
15.0499 Pst 18/06/2015 Europe UK Headley Hall, North Yorkshire Solstice Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
16.0112 Pst 21/03/2015 Europe UK Layer de la Haye Solstice Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
16.0117 Pst 22/03/2016 Europe UK West Wickham KWS Santiago Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
16.0120 Pst 21/03/2016 Europe UK Chelsworth KWS Santiago Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
16.0206 Pst 17/06/2016 Europe UK Ickleton Oakley Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
16.0365 Pst 25/05/2016 Europe UK Newark KWS Santiago Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
16.0603 Pst 08/06/2016 Europe UK Fowlmere KWS Santiago Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
16.0612 Pst 13/06/2016 Europe UK Fowlmere KWS Santiago Triticum aestivum Unknown Corredor-Moreno et al., 2021 The branched-chain amino acid aminotransferase TaBCAT1 modulates amino acid metabolism and positively regulates wheat rust susceptibility The Plant Cell (5) https://doi.org/10.1093/plcell/koab049
15.0305 Pst 22/04/2015 North America USA Wichita, Kansas Tam 112 Other Marla Barnett Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0306 Pst 22/04/2015 North America USA Wichita, Kansas Everest Other Marla Barnett Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0308 Pst 30/04/2015 North America USA Cash, Arkansas LCS 2141 Other Marla Barnett Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0348 Pst 01/06/2015 North America USA Bozeman, Montana Yellowstone Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0349 Pst 27/05/2015 North America USA Corvallis, Oregon ORCF 101R Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0350 Pst 03/06/2015 North America USA Siskiyou, California YS 221 Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0351 Pst 02/06/2015 North America USA Montana Unknown Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0353 Pst 26/05/2015 North America USA Cimarron, Oklahoma Byrd Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0354 Pst 11/06/2015 North America USA Endicott, Washington Unknown Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0355 Pst 11/06/2015 North America USA St. John, Washington Unknown Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0356 Pst 10/06/2015 North America USA Gregory, South Dakota Unknown Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0357 Pst 09/06/2015 North America USA Ririe, Idaho Deloris Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0359 Pst 24/06/2015 North America USA Walla Walla, Washington Express Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0360 Pst 29/06/2015 North America USA Tripp, South Dakota Unknown Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0361 Pst 02/07/2015 North America USA Box Butte, Nebraska Unknown Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0363 Pst 10/04/2015 North America USA Mt. Vernon, Washington PS 279 Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0365 Pst 28/05/2015 North America USA Hitchcock, Nebraska Unknown Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0366 Pst 09/03/2015 North America USA Hidalgo, Texas Sisson Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
15.0367 Pst 02/07/2015 North America USA Clarkton, South Dakota Unknown Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0142 Pst 12/05/2016 North America USA Walla Walla, Washington LCS Jet Other Jeron Chatelain Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0144 Pst 13/05/2016 North America USA Reardan, Washington Ovation Other Jeron Chatelain Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0145 Pst 17/05/2016 North America USA Lafayette, Indiana DH13SRW024-182 Other Tracy Richards Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0527 Pst 21/04/2016 North America USA Warsaw, Virginia Unknown Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0529 Pst 07/04/2016 North America USA Hutchinson, Kansas Kannlark Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0535 Pst 26/04/2016 North America USA Rockland, Idaho Bonneville Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0536 Pst 20/04/2016 North America USA Othello, Washington Unknown Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0548 Pst 26/04/2016 North America USA Kalispell, Montana Decade Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0551 Pst 04/04/2016 North America USA Woodland, California Breeding Line Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0554 Pst 27/05/2016 North America USA Weedsport, New York Seedway Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
16.0555 Pst 23/05/2016 North America USA Lansing, Michigan K505hw14 Other Xianming Cheng Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0006 Pst 07/04/2017 North America USA Chickasha, Oklahoma Ruby Lee Other Marla Barnett Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0007 Pst 11/04/2017 North America USA Altus, Oklahoma Snowmass Other Marla Barnett Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0008 Pst 25/04/2017 North America USA Wichita, Kansas 2141 Other Marla Barnett Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0009 Pst 27/04/2017 North America USA Wichita, Kansas LCS Compass Other Marla Barnett Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0021 Pst 25/05/2017 North America USA Lafayette, Indiana NC13142-33 Other Tracy Richards Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0022 Pst 25/05/2017 North America USA Lafayette, Indiana NC13142-35 Other Tracy Richards Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0023 Pst 25/05/2017 North America USA Lafayette, Indiana NC13142-36 Other Tracy Richards Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0057 Pst 13/06/2017 North America USA Walla Walla, Washington Otto Other Jay Kalous Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
17.0058 Pst 13/06/2017 North America USA Walla Walla, Washington Artdeco Other Jay Kalous Radhakrishnan et al., 2019 Mobile and real-time plant disease (MARPLE) diagnostics for strain-level identification of complex fungal pathogens BMC Biology https://www.ncbi.nlm.nih.gov/pubmed/31405370
18.0178 Pst 04/11/2018 Africa Zimbabwe unknown Nduna Triticum aestivum Unknown Boshoff et al., 2020 First Report of Puccinia striiformis f. sp. tritici, Causing Stripe Rust of Wheat, in Zimbabwe Plant Disease https://doi.org/10.1094/PDIS-07-19-1395-PDN
18.0183 Pst 04/11/2018 Africa Zimbabwe unknown Nduna Triticum aestivum Unknown Boshoff et al., 2020 First Report of Puccinia striiformis f. sp. tritici, Causing Stripe Rust of Wheat, in Zimbabwe Plant Disease https://doi.org/10.1094/PDIS-07-19-1395-PDN
18.0184 Pst 04/11/2018 Africa Zimbabwe unknown Nduna Triticum aestivum Unknown Boshoff et al., 2020 First Report of Puccinia striiformis f. sp. tritici, Causing Stripe Rust of Wheat, in Zimbabwe Plant Disease https://doi.org/10.1094/PDIS-07-19-1395-PDN
J0085F Pst 2000 Europe France unknown Unknown France 1988-2013 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
J01144Bm1 Pst 2001 Europe France unknown Unknown France 1988-2013 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
j02-022 Pst 2002 Europe France unknown Unknown France 1988-2013 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
J02055C Pst 2002 Europe France unknown Unknown France 1988-2013 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
J8861m2 Pst 1988 Europe France unknown Unknown France 1988-2013 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
J89110 Pst 1989 Europe France unknown Unknown France 1988-2013 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
J89121M6 Pst 1989 Europe France unknown Unknown France 1988-2013 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
01/34s10 Pst 2001 Europe UK unknown Unknown UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
08/21 Pst 2008 Europe UK unknown Solstice UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
08/501 Pst 2008 Europe UK unknown Timber UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
78.66SS1 Pst 1978 Europe UK unknown Unknown UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
87/27s2 Pst 1987 Europe UK unknown Unknown UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
87/66s1 Pst 1987 Europe UK unknown Unknown UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
88.44SS3 Pst 1988 Europe UK unknown Unknown UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
88.45SS Pst 1988 Europe UK unknown Unknown UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
88.55SS Pst 1988 Europe UK unknown Unknown UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8
98/83s3 Pst 1998 Europe UK unknown Unknown UK 1978-2011 Unknown Hubbard et al., 2015 Field pathogenomics reveals the emergence of a diverse wheat yellow rust population Genome Biol. (1): 23 (2015) https://genomebiology.biomedcentral.com/articles/10.1186/s13059-015-0590-8