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首页> 外文期刊>Euphytica >Markers linked to the bc-3 gene conditioning resistance to bean common mosaic potyviruses in common bean
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Markers linked to the bc-3 gene conditioning resistance to bean common mosaic potyviruses in common bean

机译:与bc-3基因调节抗性相关的标记

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Necrotic strains of bean common mosaic potyviruses are becoming increasingly problematic in bean growing areas of Africa and Europe. Pyramiding epistatic resistance genes provides the most effective long-term strategy for disease control against all known strains of the virus. Indirect selection using tightly linked markers should facilitate the breeding of desired epistatic resistance gene combinations. In common bean, the most effective strategy for broad spectrum control of the bean common mosaic potyviruses is to combine I and bc-3 genes. We describe the use of near-isogenic lines and segregating populations from different gene pools combined with bulked segregant analysis to identify markers tightly linked with the recessive bc-3 gene that conditions resistance to all strains of bean common mosaic necrosis virus. We identified a RAPD marker, OG6595, linked at 3.7 cM from the bc-3, and the marker was used to confirm the location of bc-3 gene on bean linkage group B6. A codominant AFLP marker, E ACA M CGG -169/172 was identified and linked at 3.5 cM from the bc-3 and the AFLP and OG6595 markers flanked the bc-3 gene. The AFLP marker was converted to the STS marker SE ACA M CGG -134/137 which showed co-segregation with the original AFLP marker. The 134 bp fragment associated with resistance was linked with the bc-3 gene present in a diverse group of bean genotypes except in two kidney bean lines. The OG6595 marker mapped on B6 supported independence of bc-3 from the I gene located on B2, which provides the opportunity to readily combine both genes in a single bean cultivar for broad spectrum resistance to bean common mosaic potyviruses.
机译:在非洲和欧洲的豆类种植地区,豆类常见的花叶马铃薯小病毒的坏死株变得越来越成问题。金字塔上位抗性基因为针对所有已知病毒株的疾病控制提供了最有效的长期策略。使用紧密连接的标记进行间接选择应有助于育成所需的上位抗性基因组合。在普通豆中,用于广谱控制普通豆花叶病毒的最有效策略是结合I和bc-3基因。我们描述了使用近等基因系和从不同基因库中分离群体,并与大量分离剂分析相结合,以鉴定与隐性bc-3基因紧密相连的标志物,该标志物对豆类普通花叶坏死病毒的所有菌株都具有抗性。我们确定了一个与bc-3连锁的3.7 cM处的RAPD标记OG6595 ,该标记用于确认bc-3基因在B6豆连锁群中的位置。鉴定出了一个共同的AFLP标记物,EACA M CGG -169/172,并在距bc-3 3.5 cM处连接,AFLP和OG6595 标记物位于bc-3基因的侧面。 AFLP标记被转换为STS标记SE ACA M CGG -134/137,与原始AFLP标记共分离。与抗性相关的134 bp片段与存在于多种豆基因型组中的bc-3基因相关,除了两个芸豆系。定位在B6上的OG6595 标记支持bc-3与位于B2上的I基因的独立性,这提供了将两个基因轻松组合到单个豆品种中的机会,从而对豆类普通花叶马铃薯病毒具有广谱抗性。

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