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Identification and Fine-Mapping of a Major Maize Leaf Width QTL in a Re-sequenced Large Recombinant Inbred Lines Population

机译:重组大重组自交系群体中主要玉米叶宽QTL的鉴定和精细定位

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摘要

Leaf width (LW) influences canopy architecture of population-cultured maize and can thus contribute to density breeding. In previous studies, almost all maize LW-related mutants have extreme effect on leaf development or accompanied unfavorable phenotypes. In addition, the identification of quantitative trait loci (QTLs) has been resolution-limited, with cloning and fine-mapping rarely performed. Here, we constructed a bin map for 670 recombinant inbred lines (RILs) using ∼1.2 billion 100-bp re-sequencing reads. QTL analysis of the LW trait directly narrowed the major effect QTL, qLW4, to a ∼270-kb interval. A fine-mapping population and near-isogenic lines (NILs) were quickly constructed using a key RIL harboring heterozygous genotypes across the qLW4 region. A recombinant-derived progeny testing strategy was subsequently used to further fine-map qLW4 to a 55-kb interval. Examination of NILs revealed that qLW4 has a completely dominant effect on LW, with no additional effect on leaf length. Candidate gene analysis suggested that this locus may be a novel LW controlling allele in maize. Our findings demonstrate the advantage of large-population high-density bin mapping, and suggest a strategy for efficiently fine-mapping or even cloning of QTLs. These results should also be helpful for further dissection of the genetic mechanism of LW variation, and benefit maize density breeding.
机译:叶宽(LW)影响人口养殖玉米的冠层结构,因此可以促进密度育种。在以前的研究中,几乎所有与玉米LW相关的突变体都对叶片发育或伴随不利的表型产生极端影响。另外,定量特征位点(QTL)的鉴定受到分辨率的限制,很少进行克隆和精细定位。在这里,我们使用约12亿个100 bp的重测序读数构建了670个重组自交系(RIL)的bin图。对LW性状的QTL分析直接将主要效应QTL qLW4的范围缩小到270kb。使用在整个qLW4区域中具有杂合基因型的关键RIL,可以快速构建精细映射的种群和近等基因系(NIL)。随后使用重组衍生的后代测试策略将qLW4进一步精细映射到55-kb的间隔。 NIL的检查表明qLW4对LW具有完全的主导作用,而对叶长没有其他影响。候选基因分析表明,该基因座可能是玉米中控制LW的新等位基因。我们的发现证明了高密度高密度bin映射的优势,并提出了有效地精细映射甚至克隆QTL的策略。这些结果也将有助于进一步剖析LW变异的遗传机制,并有利于玉米密度育种。

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