Evaluation of durability of blast resistance gene Rmg8 in common wheat based on analyses of its corresponding avirulence gene
Author:
Funder
Agriculture, Forestry and Fisheries Research Council
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Agronomy and Crop Science
Link
http://link.springer.com/content/pdf/10.1007/s10327-020-00967-7.pdf
Reference30 articles.
1. Anh VL, Anh NT, Tagle AG, Vy TTP, Inoue Y, Takumi S, Chuma I, Tosa Y (2015) Rmg8, a new gene for resistance to Triticum isolates of Pyricularia oryzae in hexaploid wheat. Phytopathology 105:1568–1572
2. Anh VL, Inoue Y, Asuke S, Vy TTP, Anh NT, Wang S, Chuma I, Tosa Y (2018) Rmg8 and Rmg7, wheat genes for resistance to the wheat blast fungus, recognize the same avirulence gene AVR-Rmg8. Mol Plant Pathol 19:1252–1256
3. Asuke S, Nishimi S, Tosa Y (2020) At least five major genes are involved in the avirulence of an Eleusine isolate of Pyricularia oryzae on common wheat. Phytopathology 110:465–471
4. Callaway E (2016) Devastating wheat fungus appears in Asia for first time. Nature 532:421–422
5. Chuma I, Isobe C, Hotta Y, Ibaragi K, Futamata N, Kusaba M, Yoshida K, Terauchi R, Fujita Y, Nakayashiki H, Valent B, Tosa Y (2011) Multiple translocation of the AVR-Pita effector gene among chromosomes of the rice blast fungus Magnaporthe oryzae and related species. PLoS Pathog 7:e1002147
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1. Breeding of a Near-Isogenic Wheat Line Resistant to Wheat Blast at Both Seedling and Heading Stages Through Incorporation of Rmg8;Phytopathology®;2024-08
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4. Breeding of a near-isogenic wheat line resistant to wheat blast at both seedling and heading stages through incorporation ofRmg8;2023-07-12
5. Effector genes in Magnaporthe oryzae Triticum as Potential Targets for Incorporating Blast Resistance in Wheat;Plant Disease;2021-12-21
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