Virulence of Puccinia triticina, the Wheat Leaf Rust Fungus, in the United States in 2017

被引:39
作者
Kolmer, J. A. [1 ]
机构
[1] USDA ARS, Cereal Dis Lab, St Paul, MN 55108 USA
关键词
fungi; wheat; pathogen diversity; PHYSIOLOGICAL SPECIALIZATION; RESISTANCE GENES; RECONDITA; CULTIVARS; GENETICS; TRANSLOCATION; PHENOTYPES;
D O I
10.1094/PDIS-09-18-1638-SR
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Samples of wheat leaves infected with the leaf rust fungus, Puccinia triticina, were obtained in 2017 from agricultural experiment station plots, demonstration plots, and farm fields in the Great Plains, the Ohio Valley, the southeastern states, California, and Washington in order to determine the prevalent virulence phenotypes present in the United States. A total of 65 virulence phenotypes were identified among the 469 single uredinial isolates that were tested on 20 near-isogenic lines of Thatcher wheat that differ for leaf rust resistance genes. Virulence phenotypes MBTNB at 11.3% of the overall population, and MCTNB at 7.0%, were the first and third most common phenotypes. Both phenotypes were found mostly in the southeastern states and Ohio Valley region. Phenotype TFTSB at 10.9% was the second most common phenotype and was found mostly in southern Texas. Virulence to leaf rust resistance gene Lr39, which is present in hard red winter wheat cultivars, was highest in the Great Plains region. Virulence to Lr11 and Lr18, which are present in soft red winter wheat cultivars, was highest in the southeastern states and Ohio Valley region. Virulence to Lr21, which is present in hard red spring wheat cultivars, was highest in the northern Great Plains region. The predominate P. triticina phenotypes from the soft red winter wheat regions of the southeastern states and Ohio Valley area differed from those in the hard red winter and hard red spring wheat areas of the Great Plains region. Collections from Washington had unique virulence phenotypes that had not been previously detected.
引用
收藏
页码:2113 / 2120
页数:8
相关论文
共 33 条
[1]  
Browder L. E., 1965, PHYSL SPECIALIZATION, P34
[2]   A COMPENDIUM OF INFORMATION ABOUT NAMED GENES FOR LOW REACTION TO PUCCINIA-RECONDITA IN WHEAT [J].
BROWDER, LE .
CROP SCIENCE, 1980, 20 (06) :775-779
[3]   PROBABLE GENOTYPE OF SOME TRITICUM-AESTIVUM AGENT DERIVATIVES FOR REACTION TO PUCCINIA-RECONDITA F-SP-TRITICI [J].
BROWDER, LE .
CROP SCIENCE, 1973, 13 (02) :203-206
[4]   The 2NS Translocation from Aegilops ventricosa Confers Resistance to the Triticum Pathotype of Magnaporthe oryzae [J].
Cruz, C. D. ;
Peterson, G. L. ;
Bockus, W. W. ;
Kankanala, P. ;
Dubcovsky, J. ;
Jordan, K. W. ;
Akhunov, E. ;
Chumley, F. ;
Baldelomar, F. D. ;
Valent, B. .
CROP SCIENCE, 2016, 56 (03) :990-1000
[5]   INHERITANCE OF VIRULENCE IN PUCCINIA-RECONDITA ON ALLELES AT LR2 LOCUS FOR RESISTANCE IN WHEAT [J].
DYCK, PL ;
SAMBORSKI, DJ .
CANADIAN JOURNAL OF GENETICS AND CYTOLOGY, 1974, 16 (02) :323-332
[6]  
Johnston C. O., 1968, Technical Bulletin. United States Department of Agriculture
[7]   Wheat leaf and stem rust in the United States [J].
Kolmer, J. A. ;
Jin, Y. ;
Long, D. L. .
AUSTRALIAN JOURNAL OF AGRICULTURAL RESEARCH, 2007, 58 (06) :631-638
[8]   Physiologic specialization of Puccinia triticina on wheat in the United States in 2005 [J].
Kolmer, J. A. ;
Long, D. L. ;
Hughes, M. E. .
PLANT DISEASE, 2007, 91 (08) :979-984
[9]   A Backcross Line of Thatcher Wheat with Adult Plant Leaf Rust Resistance Derived from Duster Wheat has Lr46 and Lr77 [J].
Kolmer, J. A. ;
Su, Z. ;
Bernardo, A. ;
Bai, G. ;
Chao, S. .
PHYTOPATHOLOGY, 2019, 109 (01) :127-132
[10]  
Kolmer JA, 2018, PLANT DIS, V102, P1066, DOI [10.1094/PDIS-11-17-1701-SR, 10.1094/pdis-11-17-1701-sr]