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Resistance and virulence variability in wheat-Zymoseptoria tritici interactions

机译:小麦 - 唑虫蛋白蛋白相互作用的抗性与毒力变异性

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Septoria tritici blotch (STB), caused by Zymoseptoria tritici, is an important disease of wheat worldwide. This study was performed to investigate the efficacy of Stb genes against 10 isolates of Z. tritici and to elucidate the resistance response pattern of 185 wheat genotypes to STB. The 10 isolates showed different virulence patterns on the Stb differentials. Effectiveness determination showed that most Stb genes (particularly Stb1-Stb9) were ineffective against the 10 isolates, whereas Kavkaz-K4500 (possessing Stb10, Stb12), Arina and Riband (possessing Stb15), and M3 (possessing Stb16 and Stb17) were resistant to all isolates tested. Of the 185 wheat genotypes, 72% were susceptible to all isolates, indicating that these genotypes lacked any effective resistance genes at the seedling stage against the isolates used. The remaining 51 genotypes showed specific resistance to one or more isolates, suggesting that they contain at least one effective resistance gene. Six genotypes were resistant to all isolates, indicating that they may possess broad-spectrum resistance gene(s) or a combination of diverse uncharacterised Stb genes that could be effectively used in breeding programs.
机译:Zymoseptoria tritici引起的eptoria Tritici Blotch(STB)是全世界小麦的重要疾病。进行该研究以研究STB基因对10个分离株的Z. Tritici的功效,并阐明185个小麦基因型的阻力响应模式对STB。 10个分离物在STB差分上显示出不同的毒力模式。有效性测定表明,大多数STB基因(特别是STB1-STB9)对10个分离株无效,而Kavkaz-K4500(具有STB10,STB12),Arina和Riband(具有STB15)和M3(具有STB16和STB17)是抗性的所有的分离株都测试过。在185个小麦基因型中,72%易于所有分离株对,表明这些基因型缺乏幼苗阶段的任何有效性抗性基因对幼苗阶段的任何有效的抗性基因抵御所用的分离物。其余51个基因型显示出对一种或多种分离物的特异性抗性,表明它们含有至少一种有效性抗性基因。六种基因型对所有分离株抵抗力,表明它们可以具有广谱抗性基因或可以有效地用于育种计划中的多种无表达STB基因的组合。

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