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A donor-specific QTL, exhibiting allelic variation for leaf sheath hairiness in a nested association mapping population, is located on barley chromosome 4H

机译:大麦染色体4H上有一个供体特异性QTL,在巢式关联作图群体中表现出叶鞘毛羽的等位基因变异

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摘要

Leaf sheath hairiness is a morphological trait associated with various advantages, including tolerance to both abiotic and biotic stresses, thereby increasing yield. Understanding the genetic basis of this trait in barley can therefore improve the agronomic performance of this economically important crop. We scored leaf sheath hairiness in a two-year field trial in 1,420 BC1S3 lines from the wild barley nested association mapping (NAM) population HEB-25. Leaf sheath hairiness segregated in six out of 25 families with the reference parent Barke being glabrous. We detected the major hairy leaf sheath locus Hs (syn. Hsh) on chromosome 4H (111.3 cM) with high precision. The effects of the locus varied across the six different wild barley donors, with donor of HEB family 11 conferring the highest score of leaf sheath hairiness. Due to the high mapping resolution present in HEB-25, we were able to discuss physically linked pentatricopeptide repeat genes and subtilisin-like proteases as potential candidate genes underlying this locus. In this study, we proved that HEB-25 provides an appropriate tool to further understand the genetic control of leaf sheath hairiness in barley. Furthermore, our work represents a perfect starting position to clone the gene responsible for the 4H locus observed.
机译:叶鞘毛羽是一种形态特征,具有多种优势,包括对非生物和生物胁迫的耐受性,从而提高了产量。因此,了解大麦该性状的遗传基础可以改善这种具有重要经济意义的农作物的农艺性能。在一项为期两年的田间试验中,我们从野生大麦嵌套关联图谱(NAM)种群HEB-25中对1440个BC1S3系进行了叶鞘毛羽评分。 25个家庭中有6个家庭的叶鞘毛羽分离,参考亲本Barke无毛。我们以高精度检测到了染色体4H(111.3 cM)上的主要毛状叶鞘基因座Hs(syn。Hsh)。在六个不同的野生大麦供体上,基因座的作用各不相同,HEB家族11的供体赋予了最高的叶鞘毛羽评分。由于HEB-25中存在很高的作图分辨率,我们能够讨论物理连接的五肽重复序列基因和枯草杆菌蛋白酶样蛋白酶作为潜在的候选基因。在这项研究中,我们证明了HEB-25为进一步了解大麦叶鞘毛羽的遗传控制提供了合适的工具。此外,我们的工作代表了克隆负责观察到的4H基因的基因的理想起点。

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