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Genetic analysis and detection of new QTL alleles for Septoria tritici blotch resistance using two advanced backcross wheat populations

机译:利用两个先进的回交小麦群体进行小麦抗黑斑病的新QTL等位基因的遗传分析和检测

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摘要

Septoria tritici blotch (STB) is the most aggressive disease that plagues wheat production across the world. In this study, we utilized two advanced backcross populations designated as B22 and Z86 to quest new genetic resources for STB field resistance. The populations B22 and Z86 were derived by crossing winter wheat cultivars Batis' and Zentos' with unique primary (exotic) hexaploid wheat accessions Syn022L and Syn086L, respectively. QTL analysis revealed ten QTL in the population B22 of which at five loci the introgression of exotic alleles resulted in an increase in STB resistance. The strongest exotic QTL allele was detected on chromosome 2D which decreases disease severity by 20.8%. In population Z86, five QTL were identified of which three resulted in decreasing STB severity due to the introgression of exotic alleles. Here, the strongest QTL QStb.Z86.3A was found on chromosome 3A which decreases disease severity by 19.7%. In both populations, 53% of the exotic alleles were associated to decrease STB severity suggesting the utility of primary wheat gene pool in questing new resistance resources in wheat.
机译:小麦黑斑病(STB)是困扰世界各地小麦生产的最具侵略性的疾病。在这项研究中,我们利用两个先进的回交种群分别命名为B22和Z86来寻求新的STB田间抗性遗传资源。种群B22和Z86分别是通过使冬小麦品种Batis'和Zentos'与独特的(外来)六倍体小麦登录号Syn022L和Syn086L杂交而获得的。 QTL分析揭示了B22群体中的10个QTL,其中在5个基因座处,外来等位基因的渗入导致STB抗性增加。在2D染色体上检测到最强的外来QTL等位基因,从而使疾病严重程度降低了20.8%。在Z86种群中,鉴定出5个QTL,其中3个由于外来等位基因的渗入而导致机顶盒严重性降低。在这里,在3A染色体上发现了最强的QTL QStb.Z86.3A,使疾病严重程度降低了19.7%。在这两个种群中,有53%的外来等位基因与STB严重度降低相关,这表明初级小麦基因库在寻找小麦新的抗性资源中的实用性。

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