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Molecular mapping of the novel powdery mildew resistance gene Pm36 introgressed from Triticum turgidum var. dicoccoides in durum wheat

机译:小麦白粉病基因渗入的新型抗白粉病基因Pm36的分子作图。硬粒小麦中的双杀菌剂

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Powdery mildew, caused by Blumeria graminis f.sp. tritici, is one of the most important wheat diseases in many regions of the world. Triticum turgidum var. dicoccoides (2n = 4x = AABB), the progenitor of cultivated wheats, shows particular promises as a donor of useful genetic variation for several traits, including disease resistances. The wild emmer accession MG29896, resistant to powdery mildew, was backcrossed to the susceptible durum wheat cultivar Latino, and a set of backcross inbred lines (BC5F5) was produced. Genetic analysis of F3 populations from two resistant introgression lines (5BIL-29 × Latino and 5BIL-42 × Latino) indicated that the powdery mildew resistance is controlled by a single dominant gene. Molecular markers and the bulked segregant analysis were used to characterize and map the powdery mildew resistance. Five AFLP markers (XP43M32 (250), XP46M31 (410), XP41M37 (100), XP41M39 (250), XP39M32 (120)), three genomic SSR markers (Xcfd07, Xwmc75, Xgwm408) and one EST-derived SSR marker (BJ261635) were found to be linked to the resistance gene in 5BIL-29 and only the BJ261635 marker in 5BIL-42. By means of Chinese Spring nullisomic–tetrasomic, ditelosomic and deletion lines, the polymorphic markers and the resistance gene were assigned to chromosome bin 5BL6-0.29-0.76. These results indicated that the two lines had the same resistance gene and that the introgressed dicoccoides chromosome segment was longer (35.5 cM) in 5BIL-29 than that introgressed in 5BIL-42 (less than 1.5 cM). As no powdery mildew resistance gene has been reported on chromosome arm 5BL, the novel resistance gene derived from var. dicoccoides was designated Pm36. The 244 bp allele of BJ261635 in 5BIL-42 can be used for marker-assisted selection during the wheat resistance breeding process for facilitating gene pyramiding.
机译:白粉病,由Blumeria graminis f.sp.引起。小麦是世界许多地区最重要的小麦疾病之一。小麦粉变种dicoccoides(2n = 4x = AABB),栽培小麦的祖先,显示出对某些特性(包括抗病性)有用的遗传变异的捐助者的特殊前景。将耐白粉病的野生Emmer品系MG29896与易感硬质小麦品种Latino回交,并产生了一组回交自交系(BC 5 F 5 ) 。对来自两个抗性渗入系(5BIL-29×Latino和5BIL-42×Latino)的F 3 种群的遗传分析表明,白粉病抗性由一个显性基因控制。使用分子标记和大量的分离剂分析来表征和绘制抗白粉病的图。五个AFLP标记(XP43M32 (250),XP46M31 (410),XP41M37 (100),XP41M39 (250),XP39M32 (120)),三个基因组SSR标记(Xcfd07,Xwmc75,Xgwm408)和一个EST衍生SSR标记(BJ261635)与5BIL-29和5BIL-42中只有BJ261635标记。利用中国春的零等位基因组,四端体基因组,双端体基因组和缺失系,将多态性标记和抗性基因分配给了5bin6-0.29-0.76染色体。这些结果表明,这两个品系具有相同的抗性基因,并且在5BIL-29中渗入的dicoccoides染色体节段(35.5 cM)比在5BIL-42中渗入的dicoccoides染色体段更长(小于1.5 cM)。由于在第5BL染色体臂上没有白粉病抗性基因的报道,该新抗性基因来源于var。二杀菌剂称为Pm36。 5BIL-42中BJ261635的244 bp等位基因可用于小麦抗性育种过程中的标记辅助选择,以促进基因金字塔。

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