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Genome-Wide Association Study (GWAS) for resistance to

机译:基因组协会研究(GWAS)抵抗

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摘要

White mold (WM) is a devastating fungal disease affecting common bean (Phaseolus vulgaris L.). In this research, a genome-wide association study (GWAS) for WM resistance was conducted using 294 lines of the Spanish diversity panel. One single-locus method and six multi-locus methods were used in the GWAS. Response to this fungus showed a continuous distribution, and 28 lines were identified as potential resistance sources, including lines of Andean and Mesoamerican origin, as well as intermediate lines between the two gene pools. Twenty-two significant associations were identified, which were organized into 15 quantitative trait intervals (QTIs) located on chromosomes Pv01, Pv02, Pv03, Pv04, Pv08, and Pv09. Seven of these QTIs were identified for the first time, whereas eight corresponded to chromosome regions previously identified in the WM resistance. In all, 468 genes were annotated in these regions, 61 of which were proposed potential candidate genes for WM resistance, based on their function related to the three main defense stages on the host: recognition (22), signal transduction (8), and defense response (31). Results obtained from this work will contribute to a better understanding of the complex quantitative resistance to WM in common bean and reveal information of significance for future breeding programs.
机译:白色模具(WM)是一种影响常见豆(Phopololusulgaris L.)的毁灭性的真菌疾病。在该研究中,使用294线的西班牙多样性面板进行了用于WM电阻的基因组 - 宽协会研究(GWAS)。在GWA中使用了一种单轨法和六种多基因座方法。对该真菌的反应显示出连续分布,并将28条线被鉴定为潜在的阻力来源,包括Andean和MesoAmerican的线条,以及两个基因库之间的中间线。鉴定了22个显着的关联,其组织成位于PV01,PV02,PV03,PV04,PV01和PV09的染色体上的15个定量特征间隔(QTIS)。首次鉴定出这些QTI中的七个,而八个对应于先前在WM抗性中识别的染色体区域。在所有情况下,在这些区域中注释了468个基因,其中61个,其中提出了潜在的WM抗性候选基因,基于其与主机上的三个主要防御阶段相关的功能:识别(22),信号转导(8),以及国防响应(31)。从这项工作获得的结果将有助于更好地了解共同豆类中对WM的复杂定量抗性,并揭示了未来育种计划的重要性。

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