首页> 外文学位 >Quantitative trait loci analysis of resistance to white mold (Sclerotinia sclerotiorum) in common bean (Phaseolus vulgaris).
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Quantitative trait loci analysis of resistance to white mold (Sclerotinia sclerotiorum) in common bean (Phaseolus vulgaris).

机译:普通豆类(菜豆)对白霉病(Sclerotinia sclerotiorum)抗性的定量性状基因座分析。

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摘要

White mold, caused by Sclerotinia sclerotiorum (Lib.) De Bary, is a serious yield reducing fungal pathogen of common bean (Phaseolus vulgaris L.). The objective of this study was to: identify QTL for resistance to white mold and associated agronomic traits in two inbred backcross line (IBL) populations derived from the recurrent black bean parent Tacana; two recombinant inbred line (RIL) pinto bean populations derived from a common parent AN-37 and to explore the role of defense genes during infection of bean genotypes with contrasting responses to white mold.;In the IBL populations selective phenotyping failed to detect QTL for field disease resistance but other agronomic traits less sensitive to environmental conditions were detected. Four novel QTLs for white mold resistance were identified in the greenhouse straw test on bean chromosomes Pv03, Pv07, Pv09 and Pv11, respectively and two previously mapped QTL were also validated on Pv02 and Pv04.;The two pinto bean RIL populations were genotyped with SSR, InDel and SNP markers resulting in two linkage maps of 1183 and 953 cM and a total of fifty QTL were identified in different years for eight traits (white mold disease incidence, seed yield, days to flowering, days to maturity, 100 seed weight, canopy height, lodging and the straw test). These QTL were located across all 11 chromosomes with LOD scores ranged from the threshold of 2.5 to 10.5. Six new QTL for yield were identified on Pv01, Pv02, Pv03, Pv05 and Pv09. Seven new QTL for white mold were identified on Pv01, Pv04, Pv07 and Pv08 and two were validated on Pv02 and Pv03.;Analysis of defense genes in response to white mold infection showed variable temporal transcription suggesting that the resistance reported in different bean genotypes to white mold could be due to different defense pathways. The induction of defense genes at different time points in the contrasting genotypes confirm the quantitative nature of the observed resistance to white mold in common bean.
机译:由菌核盘菌(Sclerotionia sclerotiorum)(Lib。)De Bary引起的白色霉菌是一种严重降低产量的普通豆类真菌病原体(菜豆)。这项研究的目的是:确定来自轮回黑豆亲本塔卡纳的两个近交回交系(IBL)群体对白霉病和相关农艺性状的抗性QTL;来自一个共同亲本AN-37的两个重组近交品系(RIL)斑豆种群,并探索防御基因在豆基因型感染期间对白霉病形成对比反应的作用。在IBL种群中,选择性表型未能检测到QTL检测到田间抗病性,但检测到其他对环境条件较不敏感的农艺性状。在温室秸秆试验中分别鉴定了四个新的抗白霉病QTL,分别针对豆染色体Pv03,Pv07,Pv09和Pv11,并且在Pv02和Pv04上也验证了两个先前定位的QTL;对两个斑豆RIL群体进行了SSR基因分型,InDel和SNP标记在不同年份鉴定了8个性状(白霉病发病率,种子产量,开花天数,成熟天数,100种子重,100个种子重量,导致两个连锁图分别为1183和953 cM和总共50个QTL)树冠高度,倒伏和吸管测试)。这些QTL位于所有11条染色体上,LOD得分范围从2.5到10.5。在Pv01,Pv02,Pv03,Pv05和Pv09上确定了六个新的产量QTL。在Pv01,Pv04,Pv07和Pv08上鉴定了七个新的白霉病QTL,并且在Pv02和Pv03上验证了两个;对白霉菌感染的防御基因进行的分析显示,时间转录存在变化,表明在不同基因型的大豆上报告的抗性白色霉菌可能是由于不同的防御途径所致。在不同基因型的不同时间点诱导防御基因,证实了观察到的普通豆对白霉病抗性的定量性质。

著录项

  • 作者

    Mkwaila, Wezi Esther.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Agriculture Plant Culture.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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