首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Genetic analysis of a worldwide barley collection for resistance to net form of net blotch disease (Pyrenophora teres f. teres)
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Genetic analysis of a worldwide barley collection for resistance to net form of net blotch disease (Pyrenophora teres f. teres)

机译:抗净污染疾病净形态的全球大麦集合的遗传分析(Pyrenophora Teres F.TERES)

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Key message A total of 449 barley accessions were phenotyped for Pyrenophora teres f. teres resistance at three locations and in greenhouse trials. Genome-wide association studies identified 254 marker-trait associations corresponding to 15 QTLs. Net form of net blotch is one of the most important diseases of barley and is present in all barley growing regions. Under optimal conditions, it causes high yield losses of 10-40% and reduces grain quality. The most cost-effective and environmentally friendly way to prevent losses is growing resistant cultivars, and markers linked to effective resistance factors can accelerate the breeding process. Here, 449 barley accessions expressing different levels of resistance comprising landraces and commercial cultivars from the centres of diversity were selected. The set was phenotyped for seedling resistance to three isolates in controlled-environment tests and for adult plant resistance at three field locations (Belarus, Germany and Australia) and genotyped with the 50 k iSelect chip. Genome-wide association studies using 33,818 markers and a compressed mixed linear model to account for population structure and kinship revealed 254 significant marker-trait associations corresponding to 15 distinct QTL regions. Four of these regions were new QTL that were not described in previous studies, while a total of seven regions influenced resistance in both seedlings and adult plants.
机译:对于Pyrenophora Teres F,总共449麦克利张开的凯伦综述。在三个地点和温室试验中的抗性。基因组 - 宽协会研究确定了对应于15 QTL的254个标记特性关联。净污染的净形式是大麦中最重要的疾病之一,并存在于所有大麦生长区域。在最佳条件下,它会导致高产损耗10-40%,降低粒度。最具成本效益和环保的防止损失的方式越来越耐粮,与有效阻力因素相关的标记可以加速育种过程。在这里,选择了449名大麦基牧草,表达不同抵抗程度的抵抗程度,包括来自多样性中心的地形和商业品种。该组是对幼苗抗性的幼苗抗性,对受控环境试验中的三个分离物,以及在三个场地(白俄罗斯,德国和澳大利亚)的成人植物抵抗力,并与50 k Iselect芯片进行基因分型。基因组 - 范围协会研究使用33,818个标记和压缩的混合线性模型,以考虑人口结构和血清关系揭示了254个对应于15个不同的QTL区域的重要标记特性关联。这些区域中的四个是在以前的研究中未描述的新QTL,而共有七个区域在幼苗和成年植物中受到抗性。

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    Julius Kuehn Inst Inst Resistance Res &

    Stress Tolerance Erwin Baur Str 27 D-06484 Quedlinburg Germany;

    All Russian Res Inst Plant Protect Shosse Podbelski 3 St Petersburg 196608 Russia;

    All Russian Res Inst Plant Protect Shosse Podbelski 3 St Petersburg 196608 Russia;

    Hermitage Res Facil Queensland Dept Agr &

    Fisheries Warwick Qld 4370 Australia;

    Justus Liebig Univ IFZ Res Ctr Biosyst Land Use &

    Nutr Dept Plant Breeding Heinrich Buff Ring 26 D-35392 Giessen Germany;

    NI Vavilov All Russian Inst Plant Genet Resource Fed Res Ctr 42-44 B Morskaya St St Petersburg 190000 Russia;

    Natl Acad Sci Belarus Arable Farming Republican Unitary Enterprise Res &

    Pract Ctr Timiriazeva St 1 Zhodino 222160 BELARUS;

    Julius Kuehn Inst Inst Resistance Res &

    Stress Tolerance Erwin Baur Str 27 D-06484 Quedlinburg Germany;

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  • 正文语种 eng
  • 中图分类 医学遗传学;
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