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首页> 外文期刊>G3: Genes, Genomes, Genetics >Fine Mapping of Ur-3, a Historically Important Rust Resistance Locus in Common Bean
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Fine Mapping of Ur-3, a Historically Important Rust Resistance Locus in Common Bean

机译:Ur-3的精细映射,这是菜豆中具有重要历史意义的抗锈性基因座

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Bean rust, caused by Uromyces appendiculatus , is a devastating disease of common bean ( Phaseolus vulgaris ) in the Americas and Africa. The historically important Ur-3 gene confers resistance to many races of the highly variable bean rust pathogen that overcome other rust resistance genes. Existing molecular markers tagging Ur-3 for use in marker-assisted selection produce false results. Here, we describe the fine mapping of the Ur-3 locus for the development of highly accurate markers linked to Ur-3 . An F2 population from the cross Pinto 114 (susceptible) × Aurora (resistant with Ur-3 ) was evaluated for its reaction to four different races of U. appendiculatus . A bulked segregant analysis using the SNP chip BARCBEAN6K_3 placed the approximate location of Ur-3 in the lower arm of chromosome Pv11. Specific SSR and SNP markers and haplotype analysis of 18 sequenced bean varieties positioned Ur-3 in a 46.5 kb genomic region from 46.96 to 47.01 Mb on Pv11. We discovered in this region the SS68 KASP marker that was tightly linked to Ur-3 . Validation of SS68 on a panel of 130 diverse common bean cultivars containing all known rust resistance genes revealed that SS68 was highly accurate and produced no false results. The SS68 marker will be of great value in pyramiding Ur-3 with other rust resistance genes. It will also significantly reduce time and labor associated with the current phenotypic detection of Ur-3 . This is the first utilization of fine mapping to discover markers linked to rust resistance in common bean.
机译:豆锈病是由乌拉米斯菌引起的,是美洲和非洲的一种毁灭性普通豆(菜豆)。具有历史意义的重要Ur-3基因赋予了抵抗其他抗锈基因的高度可变的豆类锈病病原体许多种的抗性。现有的标记Ur-3的分子标记用于标记辅助选择会产生错误的结果。在这里,我们描述了Ur-3基因座的精细定位,用于开发与Ur-3相关的高精度标记。评估了来自Pinto 114(易感)×Aurora(对Ur-3的抗性)杂交的F2种群对四个不同种族的阑尾U的反应。使用SNP芯片BARCBEAN6K_3进行的大量分离子分析将Ur-3的大约位置放置在染色体Pv11的下臂中。在Pv11上从46.96到47.01 Mb的46.5 kb基因组区域中定位Ur-3的18个测序豆品种的SSR和SNP标记物的特异性SSR和单倍型分析。我们在该区域发现了与Ur-3紧密相连的SS68 KASP标记。在包含所有已知的抗锈基因的130个不同的普通豆品种中对SS68进行了验证,结果表明SS68非常准确,并且没有产生任何错误的结果。 SS68标记对于将Ur-3与其他抗锈基因金字塔化将具有重要价值。它也将大大减少与Ur-3的当前表型检测相关的时间和劳力。这是首次使用精细映射来发现与普通豆的抗锈性相关的标记。

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