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Mapping of gene conferring adult-plant resistance to stripe rust in Chinese wheat landrace Baidatou

机译:中国小麦地方品种白大头赋予成株抗条锈性的基因定位

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Stripe rust, caused by Puccinia striiformis f. sp. tritici (Pst), is a destructive foliar disease of wheat worldwide. Sustainable control of the disease is preferably achieved by deploying stripe rust resistance genes in wheat cultivars. Our previous studies have shown that Baidatou, a Chinese wheat landrace, displayed good adult-plant resistance (APR) to wheat stripe rust in Gansu Province, an epidemic region for stripe rust in China. To elucidate the genetic basis of APR to stripe rust in Baidatou, a cross between Baidatou and Mingxian 169, which is susceptible to all the known Chinese (Pst) races, was performed. Adult plants of F-1, F-2 and F-2:3 generations derived from the cross Mingxian 169/Baidatou were inoculated in the field with the most prevalent Chinese Pst race, CYR33, in Yangling, Shaanxi Province, during 2009-2010 and 2010-2011 crop seasons, respectively. The results showed that the resistance of Baidatou to stripe rust was conferred by a single dominant gene. Six hundred and sixty simple sequence repeat (SSR) markers and 128 sequence-related amplified polymorphism (SRAP) markers were screened for association with the resistance gene to stripe rust using bulked segregant analysis. Four polymorphic SSR markers and two SRAP markers were identified to be linked to the resistance gene. A linkage map was constructed with six molecular markers and the resistance gene. The genetic distance of two flanking SSR markers to the resistance gene, temporarily designated YrBai, was 3.6 and 5.4 cM, respectively. Based on the position of the SSR markers on the wheat chromosome, YrBai was located on chromosome 6DS. According to the rust reaction patterns, SSR marker allele analysis and the pedigree of the Yr genes on chromosome 6D, YrBai is likely to be a novel APR gene against stripe rust. The specificity of the two flanking markers of YrBai was validated in 99 wheat germplasms. The gene and its flanking markers should be useful for developing wheat cultivars with durable resistance.
机译:条锈菌引起的条锈病f。 sp。小麦(Pst)是世界范围内的一种破坏性小麦叶面疾病。疾病的可持续控制最好通过在小麦品种中部署抗条锈基因来实现。我们以前的研究表明,中国小麦的地方品种百大头,对中国的条纹锈病流行地区甘肃省的小麦条纹锈病表现出良好的成年抗性。为了阐明白大头条纹除锈的APR的遗传基础,对白大头和明县169之间的杂交进行了研究,该杂交易受所有已知的中国(Pst)种族侵害。在2009-2010年期间,在陕西省杨凌地区,将由明县169 /百大头杂交而来的F-1,F-2和F-2:3代成年植物接种到中国最普遍的Pst种族CYR33上。和2010-2011作物季节。结果表明,百大头对条锈病的抗性由单个显性基因赋予。使用大量分离剂分析,筛选了660个简单序列重复(SSR)标记和128个与序列相关的扩增多态性(SRAP)标记,以与抗条锈病基因相关联。鉴定出四个多态性SSR标记和两个SRAP标记与抗性基因连锁。用六个分子标记和抗性基因构建了一个连锁图。两个侧翼的SSR标记与抗性基因(暂时称为YrBai)的遗传距离分别为3.6和5.4 cM。根据SSR标记在小麦染色体上的位置,YrBai位于6DS染色体上。根据锈反应模式,SSR标记等位基因分析和6D染色体上Yr基因的谱系,YrBai可能是抗条锈的APR新基因。在99个小麦种质中验证了YrBai的两个侧翼标记的特异性。该基因及其侧翼标记应有助于开发具有持久抗性的小麦品种。

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