首页> 外文期刊>Scientia horticulturae >Marker-assisted selection for two dominant powdery mildew resistance genes introgressed into a hybrid grape population.
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Marker-assisted selection for two dominant powdery mildew resistance genes introgressed into a hybrid grape population.

机译:标记辅助选择的两个优势白粉病抗性基因渗入杂交葡萄种群。

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摘要

Molecular marker-assisted selection (MAS) was carried out to track the inheritance of Run1 and Ren1, two dominant powdery mildew resistance genes that originate from different genetic resources. The Run1 locus was introgressed from a Muscadinia rotundifolia x Vitis vinifera BC4 hybrid plant derived from a recurrent pseudo-backcross breeding scheme, whereas the Ren1 locus was introgressed from the powdery mildew-resistant V. vinifera L. variety Kishmish vatkana. Introduction of the Ren1 resistance gene of V. vinifera origin into the breeding program makes possible the long-term defence of the dominant Run1 gene. Using a BC5 (BC4 x Kishmish vatkana) hybrid progeny consisting of 441 plants and applying several SSR and BAC-derived CB markers, we demonstrated that the powdery mildew-resistant phenotype co-segregated with the presence of at least one resistance locus-linked marker in the genome. Our data also corroborated earlier findings that the M. rotundifolia-derived Rpv1 and Run1 loci are closely linked. To further streamline the selection process, we developed a multiplex PCR- and agarose gel electrophoresis-based method for the simultaneous detection of both Run1 and Ren1. The results illustrate that MAS offers a rapid and accurate method to select hybrid genotypes that combine multiple loci of interest in grape.
机译:进行了分子标记辅助选择(MAS)跟踪 Run1 和 Ren1 的遗传,这两个显性白粉病抗性基因来自不同的遗传资源。 Run1 基因座来自轮回假拟南芥(Muscadinia rotundifolia)x Vitis vinifera BC 4 杂交植物。回交育种方案,而 Ren1 位点是由抗白粉病的 V渗入的。葡萄。Kishmish vatkana。引入 V的 Ren1 抗性基因。葡萄起源于育种程序,使得对 Run1 优势基因的长期防御成为可能。使用由441株植物组成的BC 5 (BC 4 x Kishmish vatkana)杂交后代并应用几种SSR和BAC衍生的CB标记,我们证明了抗白粉病表型与基因组中至少一种抗性基因座相关标记的存在共分离。我们的数据也证实了M的早期发现。圆叶植物衍生的 Rpv1 和 Run1 基因座紧密相连。为了进一步简化选择过程,我们开发了基于多重PCR和琼脂糖凝胶电泳的方法,用于同时检测 Run1 和 Ren1 。结果表明,MAS提供了一种快速准确的方法来选择结合了葡萄中多个目标基因座的杂种基因型。

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