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首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Resistance to stem rust Ug99 in six bread wheat cultivars maps to chromosome 6DS.
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Resistance to stem rust Ug99 in six bread wheat cultivars maps to chromosome 6DS.

机译:六个面包小麦品种对茎锈病Ug99的抗性映射到6DS染色体。

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More than 80% of the worldwide wheat (Triticum aestivum L.) area is currently sown with varieties susceptible to the Ug99 race group of stem rust fungus. However, wheat lines Niini, Tinkio, Coni, Pfunye, Blouk, and Ripper have demonstrated Ug99 resistance at the seedling and adult plant stages. We mapped stem rust resistance in populations derived from crosses of a susceptible parent with each of the resistant lines. The segregation of resistance in each population indicated the presence of a single gene. The resistance gene in Niini mapped to short arm of chromosome 6D and was flanked by SSR markers Xcfd49 at distances of 3.9 cM proximal and Xbarc183 8.4 cM distal, respectively. The chromosome location of this resistance was validated in three other populations: PBW343/Coni, PBW343/Tinkio, and Cacuke/Pfunye. Resistance initially postulated to be conferred by the SrTmp gene in Blouk and Ripper was also linked to Xcfd49 and Xbarc183 on 6DS, but it was mapped proximal to Xbarc183 at a similar position to previously mapped genes Sr42 and SrCad. Based on the variation in diagnostic marker alleles, it is possible that Niini and Pfunye may carry different resistance genes/alleles. Further studies are needed to determine the allelic relationships between various genes located on chromosome arm 6DS. Our results provide valuable molecular marker and genetic information for developing Ug99 resistant wheat varieties in diverse germplasm and using these markers to tag the resistance genes in wheat breeding.
机译:目前播种了全世界80%以上的小麦(Triticum aestivum L.)地区,其易受茎锈菌Ug99族群感染的品种。但是,小麦苗Niini,Tinkio,Coni,Pfunye,Blouk和Ripper均已在苗期和成株期表现出对Ug99的抗性。我们绘制了从易感亲本与每个抗性品系杂交得到的群体中的茎锈病抗性。每个群体中的抗性分离表明存在单个基因。 Niini中的抗性基因定位在6D染色体的短臂上,并与SSR标记Xcfd49分别位于近端3.9 cM和Xbarc183 8.4 cM的侧翼。在其他三个种群中验证了这种抗性的染色体位置:PBW343 / Coni,PBW343 / Tinkio和Cacuke / Pfunye。最初推测是由Blouk和Ripper的SrTmp基因赋予的抗性也与6DS上的Xcfd49和Xbarc183相关,但它被定位在Xbarc183的近端,其位置与先前定位的基因Sr42和SrCad相似。基于诊断标记等位基因的变异,Niini和Pfunye可能携带不同的抗性基因/等位基因。需要进一步的研究以确定位于6DS染色体臂上的各种基因之间的等位基因关系。我们的结果为开发在不同种质中抗Ug99的小麦品种并使用这些标记物标记小麦育种中的抗性基因提供了有价值的分子标记和遗传信息。

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