Virulence Characterization of International Collections of the Wheat Stripe Rust Pathogen, Puccinia striiformis f. sp. tritici
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Published:2013-03
Issue:3
Volume:97
Page:379-386
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ISSN:0191-2917
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Container-title:Plant Disease
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language:en
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Short-container-title:Plant Disease
Author:
Sharma-Poudyal D.1, Chen X. M.2, Wan A. M.3, Zhan G. M.4, Kang Z. S.4, Cao S. Q.5, Jin S. L.5, Morgounov A.6, Akin B.6, Mert Z.7, Shah S. J. A.8, Bux H.9, Ashraf M.10, Sharma R. C.11, Madariaga R.12, Puri K. D.13, Wellings C.14, Xi K. Q.15, Wanyera R.16, Manninger K.17, Ganzález M. I.18, Koyda M.19, Sanin S.19, Patzek L. J.20
Affiliation:
1. Department of Plant Pathology, Washington State University, Pullman, WA, USA 99164-6430 2. United States Department of Agriculture–Agricultural Research Service, Wheat Genetics, Quality, Physiology, and Disease Research Unit and Department of Plant Pathology, Washington State University, Pullman 3. Department of Plant Pathology, Washington State University, Pullman 4. State Key Laboratory of Crop Stress Biology for Arid Areas and College of Plant Protection, Northwest A&F University, Yangling, Shaanxi, China 5. Institute of Plant Protection, Gansu Academy of Agricultural Sciences, Lanzhou, Gansu, China 6. International Winter Wheat Improvement Program, (ICARDA-CIMMYT) Wheat Improvement Program, Ankara, Turkey 7. Central Research Institute for Field Crops, Ankara, Turkey 8. Nuclear Institute for Food and Agriculture, Peshawar, Pakistan 9. Institute of Plant Sciences, University of Sindh Jamshoro, Pakistan 10. NUST Centre of Virology and Immunology, National University of Science and Technology (NUST), Islamabad, Pakistan 11. ICARDA-Central Asia and the Caucasus Regional Program, 4564, Tashkent, Uzbekistan 12. National Institute of Agricultural Research, Chillan, Chile 13. Department of Plant Pathology, North Dakota State University, Fargo 58108-6050 14. Plant Breeding Institute, University of Sydney, Camden, NSW, Australia 15. Field Crop Development Centre, Alberta Agriculture and Food, Lacombe, Canada 16. Kenyan Agricultural Research Institute, Njoro, Kenya 17. Plant Protection Institute, Centre for Agricultural Research, Hungarian Academy of Sciences, Budapest 18. Limagrain Ibérica, Marchena, Spain 19. All-Russian Research Institute of Phytopathology, Bolshie Vyazemy, Russia 20. Department of Crop and Soil Sciences, Washington State University, NWREC, Mount Vernon
Abstract
Wheat stripe rust (yellow rust [Yr]), caused by Puccinia striiformis f. sp. tritici, is an economically important disease of wheat worldwide. Virulence information on P. striiformis f. sp. tritici populations is important to implement effective disease control with resistant cultivars. In total, 235 P. striiformis f. sp. tritici isolates from Algeria, Australia, Canada, Chile, China, Hungary, Kenya, Nepal, Pakistan, Russia, Spain, Turkey, and Uzbekistan were tested on 20 single Yr-gene lines and the 20 wheat genotypes that are used to differentiate P. striiformis f. sp. tritici races in the United States. The 235 isolates were identified as 129 virulence patterns on the single-gene lines and 169 virulence patterns on the U.S. differentials. Virulences to YrA, Yr2, Yr6, Yr7, Yr8, Yr9, Yr17, Yr25, YrUkn, Yr28, Yr31, YrExp2, Lemhi (Yr21), Paha (YrPa1, YrPa2, YrPa3), Druchamp (Yr3a, YrD, YrDru), Produra (YrPr1, YrPr2), Stephens (Yr3a, YrS, YrSte), Lee (Yr7, Yr22, Yr23), Fielder (Yr6, Yr20), Tyee (YrTye), Tres (YrTr1, YrTr2), Express (YrExp1, YrExp2), Clement (Yr9, YrCle), and Compair (Yr8, Yr19) were detected in all countries. At least 80% of the isolates were virulent on YrA, Yr2, Yr6, Yr7, Yr8, Yr17, YrUkn, Yr31, YrExp2, Yr21, Stephens (Yr3a, YrS, YrSte), Lee (Yr7, Yr22, Yr23), and Fielder (Yr6, Yr20). Virulences to Yr1, Yr9, Yr25, Yr27, Yr28, Heines VII (Yr2, YrHVII), Paha (YrPa1, YrPa2, YrPa3), Druchamp (Yr3a, YrD, YrDru), Produra (YrPr1, YrPr2), Yamhill (Yr2, Yr4a, YrYam), Tyee (YrTye), Tres (YrTr1, YrTr2), Hyak (Yr17, YrTye), Express (YrExp1, YrExp2), Clement (Yr9, YrCle), and Compair (Yr8, Yr19) were moderately frequent (>20 to <80%). Virulence to Yr10, Yr24, Yr32, YrSP, and Moro (Yr10, YrMor) was low (≤20%). Virulence to Moro was absent in Algeria, Australia, Canada, Kenya, Russia, Spain, Turkey, and China, but 5% of the Chinese isolates were virulent to Yr10. None of the isolates from Algeria, Canada, China, Kenya, Russia, and Spain was virulent to Yr24; none of the isolates from Algeria, Australia, Canada, Nepal, Russia, and Spain was virulent to Yr32; none of the isolates from Australia, Canada, Chile, Hungary, Kenya, Kenya, Nepal, Pakistan, Russia, and Spain was virulent to YrSP; and none of the isolates from any country was virulent to Yr5 and Yr15. Although the frequencies of virulence factors were different, most of the P. striiformis f. sp. tritici isolates from these countries shared common virulence factors. The virulences and their frequencies and distributions should be useful in breeding stripe-rust-resistant wheat cultivars and understanding the pathogen migration and evolution.
Publisher
Scientific Societies
Subject
Plant Science,Agronomy and Crop Science
Cited by
132 articles.
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