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Molecular mapping of two loci that confer resistance to Asian rust in soybean

机译:赋予大豆抗亚洲锈病能力的两个基因座的分子图谱

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Asian soybean rust (ASR) is caused by the fungal pathogen Phakopsora pachyrhizi Sydow & Sydow. It was first identified in Brazil in 2001 and quickly infected soybean areas in several countries in South America. Primary efforts to combat this disease must involve the development of resistant cultivars. Four distinct genes that confer resistance against ASR have been reported: Rpp1, Rpp2, Rpp3, and Rpp4. However, no cultivar carrying any of those resistance loci has been released. The main objective ofthis study was to genetically map Rpp2 and Rpp4 resistance genes. Two F_(2:3) populations, derived from the crosses between the resistant lines PI 230970 (Rpp2), PI 459025 (Rpp4) and the susceptible cultivar BRS 184, were used in this study. The mappingpopulations and parental lines were inoculated with a field isolate of P. pachyrhizi and evaluated for lesion type as resistant (RB lesions) or susceptible (TAN lesions). The mapping populations were screened with SSR markers, using the bulk segregant analysis (BSA) to expedite the identification of linked markers. Both resistance genes showed an expected segregation ratio for a dominant trait. This study allowed mapping Rpp2 and Rpp4 loci on the linkage groups J and G, respectively. The associated markers will be of great value on marker assisted selection for this trait.
机译:亚洲大豆锈病(ASR)是由真菌病原菌Phakopsora pachyrhizi Sydow和Sydow引起的。它于2001年在巴西首次被发现,并迅速感染了南美多个国家的大豆地区。对抗这种疾病的主要努力必须涉及抗性品种的发展。已经报道了赋予ASR抗性的四个不同的基因:Rpp1,Rpp2,Rpp3和Rpp4。但是,没有携带任何这些抗性基因座的品种被释放。这项研究的主要目的是对Rpp2和Rpp4抗性基因进行遗传定位。在这项研究中使用了两个F_(2:3)种群,它们来自抗性品系PI 230970(Rpp2),PI 459025(Rpp4)和易感品种BRS 184之间的杂交。用野猪假单胞菌(P.pachyrhizi)的现场分离株接种作图种群和亲本系,并评估其病灶类型为耐药(RB病灶)或易感(TAN病灶)。使用总体隔离分析(BSA)以SSR标记筛选作图群体,以加快鉴定连锁标记。两种抗性基因均显示出预期性状的显性特征。这项研究允许将Rpp2和Rpp4基因座分别映射在连接基团J和G上。相关的标记将在该特征的标记辅助选择上具有重要价值。

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