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Meta-QTL for resistance to white mold in common bean

机译:Meta-QTL可抵抗普通豆的白霉病

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摘要

White mold, caused by the fungus Sclerotinia sclerotiorum (Lib.) de Bary, is a major disease that limits common bean production and quality worldwide. The host-pathogen interaction is complex, with partial resistance in the host inherited as a quantitative trait with low to moderate heritability. Our objective was to identify meta-QTL conditioning partial resistance to white mold from individual QTL identified across multiple populations and environments. The physical positions for 37 individual QTL were identified across 14 recombinant inbred bi-parental populations (six new, three re-genotyped, and five from the literature). A meta-QTL analysis of the 37 QTL was conducted using the genetic linkage map of Stampede x Red Hawk population as the reference. The 37 QTL condensed into 17 named loci (12 previously named and five new) of which nine were defined as meta-QTL WM1.1, WM2.2, WM3.1, WM5.4, WM6.2, WM7.1, WM7.4, WM7.5, and WM8.3. The nine meta-QTL had confidence intervals ranging from 0.65 to 9.41 Mb. Candidate genes shown to express under S. sclerotiorum infection in other studies, including cell wall receptor kinase, COI1, ethylene responsive transcription factor, peroxidase, and MYB transcription factor, were found within the confidence interval for five of the meta-QTL. The nine meta-QTL are recommended as potential targets for MAS for partial resistance to white mold in common bean.
机译:由霉菌核盘菌(Sclerotionia sclerotiorum(Lib。)de Bary)引起的白霉病是一种主要疾病,限制了全世界普通豆的产量和品质。宿主-病原体的相互作用很复杂,宿主的部分抗性是作为定量性状遗传的,遗传力低至中等。我们的目标是从跨多个种群和环境的单个QTL中鉴定对白色霉菌具有部分抗性的meta-QTL。在14个重组近交双亲群体中确定了37个单独QTL的物理位置(六个新的,三个重新基因分型的和来自文献的五个)。使用Stampede x Red Hawk种群的遗传连锁图谱作为参考,对37个QTL进行了meta-QTL分析。 37个QTL浓缩为17个命名位点(以前命名为12个,新命名为5个),其中9个定义为meta-QTL WM1.1,WM2.2,WM3.1,WM5.4,WM6.2,WM7.1,WM7 .4,WM7.5和WM8.3。九个meta-QTL的置信区间为0.65至9.41 Mb。在其他研究中显示在候选葡萄球菌感染下表达的候选基因,包括细胞壁受体激酶,COI1,乙烯响应转录因子,过氧化物酶和MYB转录因子,在五个meta-QTL的置信区间内被发现。建议使用9个meta-QTL作为MAS的潜在目标,以部分抵抗普通豆中的白霉病。

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