首页> 外文期刊>Theoretical and Applied Genetics >Lr41, Lr39, and a leaf rust resistance gene from Aegilops cylindrica may be allelic and are located on wheat chromosome 2DS
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Lr41, Lr39, and a leaf rust resistance gene from Aegilops cylindrica may be allelic and are located on wheat chromosome 2DS

机译:Aegilops cylindrica的Lr41,Lr39和抗叶锈基因可能是等位基因,位于小麦2DS染色体上

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摘要

The leaf rust resistance gene Lr41 in wheat germplasm KS90WGRC10 and a resistance gene in wheat breeding line WX93D246-R-1 were transferred to Triticum aestivum from Aegilops tauschii and Ae. cylindrica, respectively. The leaf rust resistance gene in WX93D246-R-1 was located on wheat chromosome 2D by monosomic analysis. Molecular marker analysis of F2 plants from non-critical crosses determined that this gene is 11.2 cM distal to marker Xgwm210 on the short arm of 2D. No susceptible plants were detected in a population of 300 F2 plants from a cross between WX93D246-R-1 and TA 4186 (Lr39), suggesting that the gene in WX93D246-R-1 is the same as, or closely linked to, Lr39. In addition, no susceptible plants were detected in a population of 180 F2 plants from the cross between KS90WGRC10 and WX93D246-R-1. The resistance gene in KS90WGRC10, Lr41, was previously reported to be located on wheat chromosome 1D. In this study, no genetic association was found between Lr41 and 51 markers located on chromosome 1D. A population of 110 F3 lines from a cross between KS90WGRC10 and TAM 107 was evaluated with polymorphic SSR markers from chromosome 2D and marker Xgdm35 was found to be 1.9 cM proximal to Lr41. When evaluated with diverse isolates of Puccinia triticina, similar reactions were observed on WX93D246-R-1, KS90WGRC10, and TA 4186. The results of mapping, allelism, and race specificity test indicate that these germplasms likely have the same gene for resistance to leaf rust.
机译:将小麦种质KS90WGRC10中的叶锈病抗性基因Lr41和小麦育种系WX93D246-R-1中的抗锈基因从Tauschii和Ae转移到小麦中。 cylindrica,分别。通过单体分析,WX93D246-R-1中的抗叶锈基因位于小麦2D染色体上。对来自非关键杂交的F2 植物进行分子标记分析,确定该基因位于2D短臂标记Xgwm210的末端11.2 cM。在WX93D246-R-1和TA 4186(Lr39)之间的杂交中,在300株F2 植物中未检测到易感植物,这表明WX93D246-R-1中的基因与相同或紧密相连到,Lr39。此外,在KS90WGRC10与WX93D246-R-1之间的杂交中,在180株F2 植物中未检测到易感植物。先前报道KS90WGRC10中的抗性基因Lr41位于小麦1D染色体上。在这项研究中,Lr41和位于1D染色体上的51个标记之间没有发现遗传关联。用来自2D染色体的多态SSR标记评估了KS90WGRC10和TAM 107之间杂交的110条F3 系,发现标记Xgdm35距Lr41近1.9 cM。当用小麦白粉菌的各种分离物进行评估时,在WX93D246-R-1,KS90WGRC10和TA 4186上观察到类似的反应。作图,等位基因分析和种属特异性测试的结果表明,这些种质可能具有相同的抗叶基因锈。

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  • 来源
    《Theoretical and Applied Genetics》 |2004年第4期|586-591|共6页
  • 作者单位

    Department of Plant Pathology Kansas State UniversityDepartment Plant Pathology Throckmorton Plant Science Center Kansas State University;

    Department of Soil and Crop Sciences Texas AM University;

    Department of Plant Pathology Kansas State University;

    USDA-PSERU Department of Plant Pathology Kansas State University;

    USDA-ARS;

    Department of Plant Pathology Kansas State University;

    Department of Agronomy Kansas State University;

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