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AB-QTL analysis in winter wheat: II. Genetic analysis of seedling and field resistance against leaf rust in a wheat advanced backcross population

机译:冬小麦的AB-QTL分析:II。小麦先进回交群体幼苗和田间抗叶锈病的遗传分析。

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摘要

The present study aimed to localize exotic quantitative trait locus (QTL) alleles for the improvement of leaf rust (P.triticina) resistance in an advanced backcross (AB) population, B22, which is derived from a cross between the winter wheat cultivar Batis (Triticumaestivum) and the synthetic wheat accession Syn022L. The latter was developed from hybridization of T.turgidum ssp. dicoccoides and T.tauschii. Altogether, 250 BC2F3 lines of B22 were assessed for seedling resistance against the leaf rust isolate 77WxR under controlled conditions. In addition, field resistance against leaf rust was evaluated by assessing symptom severity under natural infestation across multiple environments. Simultaneously, population B22 was genotyped with a total of 97 SSR markers, distributed over the wheat A, B and D genomes. The phenotype and genotype data were subjected to QTL analysis by applying a 3-factorial mixed model analysis of variance including the marker genotype as a fixed effect and the environments, the lines and the marker by environment interactions as random effects. The QTL analysis revealed six putative QTLs for seedling resistance and seven for field resistance. For seedling resistance, the effects of exotic QTL alleles improved resistance at all detected loci. The maximum decrease of disease symptoms (−46.3%) was associated with marker locus Xbarc149 on chromosome 1D. For field resistance, two loci had stable main effects across environments and five loci exhibited marker by environment interaction effects. The strongest effects were detected at marker locus Xbarc149 on chromosome 1D, at which the exotic allele decreased seedling symptoms by 46.3% and field symptoms by 43.6%, respectively. Some of the detected QTLs co-localized with known resistance genes, while others appear to be as novel resistance loci. Our findings indicate, that the exotic wheat accession Syn022L may be useful for the improvement of leaf rust resistance in cultivated wheat.
机译:本研究旨在定位外来数量性状基因座(QTL)等位基因,以改善高级回交(AB)种群B22中叶锈病(P.triticina)的抗性,B22是从冬小麦品种Batis( Triticumaestivum)和合成小麦登录号Syn022L。后者是由turgdum ssp的杂交产生的。 dicoccoides和T.tauschii。总共评估了250株B22的BC2F3品系在受控条件下对叶锈病隔离株77WxR的幼苗抗性。另外,通过评估多种环境下自然侵染下的症状严重程度来评估田间对叶锈病的抵抗力。同时,对种群B22进行了基因分型,共有97个SSR标记,分布在小麦A,B和D基因组上。通过应用三因素混合方差分析对表型和基因型数据进行QTL分析,其中包括作为固定效应的标记基因型和作为随机效应的环境,线条和标记的方差的三因素混合模型分析。 QTL分析显示,六个抗性的QTL用于幼苗抗性,七个抗性的QTL用于田间抗性。对于幼苗抗性,外来QTL等位基因的作用提高了所有检测到的基因座的抗性。疾病症状的最大减轻(-46.3%)与1D染色体上的标记基因座Xbarc149相关。对于田间抗性,两个基因座在整个环境中均具有稳定的主效应,而五个基因座则表现出环境相互作用效应。在1D染色体上的标记基因座Xbarc149处检测到最强的作用,在该位点,外来等位基因分别使幼苗症状减少了46.3%,田间症状减少了43.6%。一些检测到的QTL与已知的抗性基因共定位,而其他一些似乎是新的抗性基因座。我们的发现表明,外来小麦登录号Syn022L可能对提高栽培小麦的抗叶锈病性有用。

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