Evaluation of USDA Soybean Germplasm Accessions for Resistance to Soybean Rust in the Southern United States
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- D. R. Walker
- USDA‐ARS Soybean/Maize Germplasm, Pathology and Genetics Research Unit and Univ. of Illinois Dep. of Crop Sciences Urbana IL 61801
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- H. R. Boerma
- Univ. of Georgia Dep. of Crop & Soil Sciences Athens GA 30602
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- D. V. Phillips
- Univ. of Georgia Dep. of Plant Pathology Griffin GA 30223
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- R. W. Schneider
- Louisiana State University Agricultural Center Dep. of Plant Pathology and Crop Physiology Baton Rouge LA 70803
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- J. B. Buckley
- Louisiana State Univ. Agricultural Center Bossier City LA 71113
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- E. R. Shipe
- Clemson Univ. Dep. of Entomology, Soils, & Plant Sciences Clemson SC 29634
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- J. D. Mueller
- Clemson Univ. Dep. of Entomology, Soils, & Plant Sciences Blackville SC 29817
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- D. B. Weaver
- Auburn Univ. Dep. of Agronomy & Soils Auburn AL 36848
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- E. J. Sikora
- Auburn Univ. Dep. of Entomology & Plant Pathology Auburn AL 36848
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- S. H. Moore
- Louisiana State University Agricultural Center Alexandria LA 71302
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- G. L. Hartman
- USDA‐ARS Soybean/Maize Germplasm, Pathology and Genetics Research Unit and Univ. of Illinois Dep. of Crop Sciences Urbana IL 61801
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- M. R. Miles
- USDA‐ARS Soybean/Maize Germplasm, Pathology and Genetics Research Unit and Univ. of Illinois Dep. of Crop Sciences Urbana IL 61801
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- D. K. Harris
- Univ. of Georgia Dep. of Crop & Soil Sciences Athens GA 30602
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- D. L. Wright
- Univ. of Florida North Florida Research and Education Center Quincy FL 32351
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- J. J. Marois
- Univ. of Florida North Florida Research and Education Center Quincy FL 32351
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- R. L. Nelson
- USDA‐ARS Soybean/Maize Germplasm, Pathology and Genetics Research Unit and Univ. of Illinois Dep. of Crop Sciences Urbana IL 61801
書誌事項
- 公開日
- 2011-03
- 権利情報
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- http://onlinelibrary.wiley.com/termsAndConditions#vor
- DOI
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- 10.2135/cropsci2010.06.0340
- 公開者
- Wiley
この論文をさがす
説明
<jats:sec><jats:title>ABSTRACT</jats:title><jats:p>Soybean [<jats:italic>Glycine max</jats:italic> (L.) Merr.] resistance to soybean rust (SBR) caused by <jats:italic>Phakopsora pachyrhizi</jats:italic> could reduce reliance on fungicides to manage this disease. The objective of this study was to identify soybean germplasm with resistance to field populations of <jats:italic>P. pachyrhizi</jats:italic> in the United States. Field evaluations of 576 accessions from the USDA Soybean Germplasm Collection for resistance to SBR were conducted at seven locations in the southern United States between 2006 and 2008. Accessions from maturity groups (MG) 000 to X and North American susceptible check cultivars from each MG except X were rated for disease severity in all year–location environments, and for disease incidence, fungal sporulation, lesion type, and/or uredinia density in certain environments. While none of the accessions was immune in all environments, 64 were resistant in two or more locations each year that they were tested. Some accessions appeared to be more resistant in certain environments than in others. Of the original four <jats:italic>Rpp</jats:italic> genes described in the literature, <jats:italic>Rpp1</jats:italic> provided the highest level of resistance, and among the accessions with uncharacterized <jats:italic>Rpp</jats:italic> genes, PI 567104B had the highest overall resistance across environments. The plant introductions confirmed to be resistant in these evaluations should be useful sources of genes for resistance to North American populations of <jats:italic>P. pachyrhizi</jats:italic></jats:p></jats:sec>
収録刊行物
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- Crop Science
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Crop Science 51 (2), 678-693, 2011-03
Wiley

