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Genetic Characterization of Multiple Disease Resistance and Agronomical/Nutritional Traits in Hordeum.

机译:大麦中多种抗病性和农艺/营养性状的遗传特征。

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摘要

Barley is an economically important crop plant whose yield and quality is affected by multiple diseases. Landrace and wild barley gene pools can be utilized to enhance disease resistance and nutrition in cultivated barley. To identify and map resistance loci for three important diseases (stem rust, spot blotch and Fusarium head blight [FHB]), and enhanced accumulation of two vital micronutrients (zinc and iron), genetic mapping was employed. The genetics of resistance to stem rust race TTKSK in Swiss landrace and wild barley accessions at the seedling stage was conducted through bi-parental mapping. Genetic analysis of F2:3 families derived from these accessions revealed that a single gene that maps to chromosome 5HL --- at or in close proximity to the complex stem rust resistance locus rpg4/Rpg5 confers resistance. An association mapping approach was utilized to identify Quantitative Trait Loci (QTL) associated with disease resistance and zinc and iron concentration in 298 Ethiopian and Eritrean barley landraces genotyped with 7,842 single nucleotide polymorphism (SNP) markers. For stem rust race TTKSK, five seedling resistance loci were identified: one each on chromosome 2HS, 2HL, 3HL, 4HL, and 5HS. The ones on chromosomes 2HL and 4HL are novel, whereas the other three mapped to regions coincident with previously reported stem rust resistance QTL. For stem rust race MCCFC at the adult plant stage, one locus coincident with a known race TTKSK resistance QTL was identified on chromosome 5HL. For spot blotch, SNP markers located in close proximity with known adult plant spot blotch resistance QTL were found on chromosomes 2HL and 4HS in six-rowed barley landraces. For FHB, one common resistance QTL on chromosome 2HL, also associated with deoxynivalenol (DON) concentration, was identified. A locus mapping to a region of chromosome 4HL, known to contain QTL associated with DON, also was detected. The loci identified on chromosomes 2HL and 4HL associated with FHB and/or DON were not associated with heading date or plant height. Two novel loci associated with grain zinc concentration were identified on chromosomes 4HS and 6HL. For kernel weight, a known QTL region on chromosome 2HL was detected.
机译:大麦是一种经济上重要的农作物,其产量和质量受多种疾病的影响。地方品种和野生大麦基因库可用于增强栽培大麦的抗病性和营养。为了鉴定和定位三种重要疾病(茎锈病,斑点斑点病和镰刀菌枯萎病[FHB])的抗性基因座,并增强两种重要的微量营养素(锌和铁)的积累,采用了遗传图谱绘制方法。通过双亲作图,对瑞士地方品种和野生大麦种苗期对茎锈病TTKSK的抗性遗传。对来自这些种质的F2:3家族的遗传分析表明,映射到5HL染色体的单个基因在复杂茎锈病抗性基因座rpg4 / Rpg5处或附近具有抗性。利用关联映射方法来鉴定与784个单核苷酸多态性(SNP)标记基因型分型的298埃塞俄比亚和厄立特里亚大麦地方品种的抗病性以及锌和铁浓度相关的定量性状位点(QTL)。对于茎锈病TTKSK,鉴定了五个幼苗抗性基因座:在染色体2HS,2HL,3HL,4HL和5HS上各一个。 2HL和4HL染色体上的那些是新颖的,而其他三个位于与先前报道的茎杆抗锈性QTL一致的区域。对于成年植物阶段的茎锈锈菌MCCFC,在5HL染色体上鉴定出一个与已知的TTKSK抗性QTL相吻合的基因座。对于斑点斑点,在六行大麦地方品种的2HL和4HS染色体上发现了与已知的成年植物斑点斑点抗性QTL紧密相邻的SNP标记。对于FHB,鉴定了2HL染色体上一个常见的抗性QTL,也与脱氧雪腐烯醇(DON)浓度相关。还检测到一个基因座,该基因座映射到已知包含与DON相关的QTL的4HL染色体区域。与FHB和/或DON相关的2HL和4HL染色体上鉴定的位点与抽穗期或株高无关。在4HS和6HL染色体上鉴定了两个与籽粒锌浓度有关的新基因座。对于籽粒重量,检测到了2HL染色体上的已知QTL区。

著录项

  • 作者

    Mamo, Bullo Erena.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Agriculture Plant Pathology.;Agriculture Plant Culture.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 311 p.
  • 总页数 311
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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