首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Co-segregation analysis and mapping of the anthracnose Co-10 and angular leaf spot Phg-ON disease-resistance genes in the common bean cultivar Ouro Negro
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Co-segregation analysis and mapping of the anthracnose Co-10 and angular leaf spot Phg-ON disease-resistance genes in the common bean cultivar Ouro Negro

机译:普通豆品种欧罗黑人炭疽病Co-10基因和角叶斑Phg-ON抗病基因的共分离分析和作图

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摘要

Anthracnose (ANT) and angular leaf spot (ALS) are devastating diseases of common bean (Phaseolus vulgaris L.). Ouro Negro is a highly productive common bean cultivar, which contains the Co-10 and Phg-ON genes for resistance to ANT and ALS, respectively. In this study, we performed a genetic co-segregation analysis of resistance to ANT and ALS using an F-2 population from the Ruda x Ouro Negro cross and the F-2:3 families from the AND 277 x Ouro Negro cross. Ouro Negro is resistant to races 7 and 73 of the ANT and race 63-39 of the ALS pathogens. Conversely, cultivars AND 277 and Ruda are susceptible to races 7 and 73 of ANT, respectively. Both cultivars are susceptible to race 63-39 of ALS. Co-segregation analysis revealed that Co-10 and Phg-ON were inherited together, conferring resistance to races 7 and 73 of ANT and race 63-39 of ALS. The Co-10 and Phg-ON genes were co-segregated and were tightly linked at a distance of 0.0 cM on chromosome Pv04. The molecular marker g2303 was linked to Co-10 and Phg-ON at a distance of 0.0 cM. Because of their physical linkage in a cis configuration, the Co-10 and Phg-ON resistance alleles are inherited together and can be monitored with great efficiency using g2303. The close linkage between the Co-10 and Phg-ON genes and prior evidence are consistent with the existence of a resistance gene cluster at one end of chromosome Pv04, which also contains the Co-3 locus and ANT resistance quantitative trait loci. These results will be very useful for breeding programs aimed at developing bean cultivars with ANT and ALS resistance using marker-assisted selection.
机译:炭疽病(ANT)和角状叶斑病(ALS)是普通豆(Phaseolus vulgaris L.)的毁灭性疾病。欧鲁黑人(Ouro Negro)是一种高产的普通豆品种,其中包含分别对ANT和ALS具有抗性的Co-10和Phg-ON基因。在这项研究中,我们使用来自Ruda x Ouro Negro十字架的F-2种群和来自AND 277 x Ouro Negro十字架的F-2:3家族对ANT和ALS的抗性进行了遗传共分离分析。 Ouro Negro对ANT的7号和73号种族以及ALS病原体的63-39号种族具有抵抗力。相反,AND和277品种和Ruda分别对ANT的第7和73种易感。两种品种都对ALS的63-39族敏感。共同偏析分析表明,Co-10和Phg-ON一起遗传,赋予了对ANT的第7和73位以及ALS的63-39位的抗性。 Co-10和Phg-ON基因共分离,并在染色体Pv04上以0.0 cM的距离紧密连接。分子标记g2303与Co-10和Phg-ON的连接距离为0.0 cM。由于它们在顺式构型中的物理连接,Co-10和Phg-ON抗性等位基因可以一起遗传,并且可以使用g2303进行高效监控。 Co-10和Phg-ON基因之间的紧密联系以及现有证据与在Pv04染色体一端存在抗性基因簇相一致,该基因还包含Co-3基因座和ANT抗性定量性状基因座。这些结果对于旨在通过标记辅助选择开发具有ANT和ALS抗性的大豆品种的育种计划非常有用。

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