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QTLs maintaining grain fertility under salt stress detected by exome QTL-seq and interval mapping in barley

机译:通过外显子组QTL-seq和大麦区间作图检测的盐胁迫下维持谷物肥力的QTL

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摘要

Enhancing salt stress tolerance is a key strategy for increasing global food production. We previously found that long-term salinity stress significantly reduced grain fertility in the salt-sensitive barley (Hordeum vulgare) accession, ‘OUC613’, but not in the salt-tolerant accession, ‘OUE812’, resulting in large differences in grain yield. Here, we examined the underlying causes of the difference in grain fertility between these accessions under long-term treatment with 150 or 200 mM NaCl from the seedling stage to harvest and identified quantitative trait loci (QTLs) for maintaining grain fertility. In an artificial pollination experiment of the two accessions, grain fertility was significantly reduced only in OUC613 plants produced using pollen from plants grown under NaCl stress, suggesting that the low grain fertility of OUC613 was mainly due to reduced pollen fertility. Using QTL-seq combined with exome-capture sequencing and composite interval mapping of recombinant inbred lines derived from a cross between OUE812 and OUC613, we identified a QTL (qRP-2Hb) for grain fertility on chromosome 2H. The QTL region includes two genes encoding an F-box protein and a TIFY protein that are associated with male sterility, highlighting the importance of this region for maintaining grain fertility under salt stress.
机译:增强盐胁迫耐受性是增加全球粮食产量的关键战略。我们先前发现,长期盐分胁迫会显着降低盐敏感大麦(OUC613)的籽粒的肥力,但耐盐大麦(OUE812)却不会,从而导致谷物产量差异很大。在这里,我们研究了从苗期到收获期长期用150或200 mM NaCl长期处理的这些种质之间籽粒育性差异的根本原因,并确定了用于维持籽粒育性的定量性状位点(QTL)。在两个种质的人工授粉实验中,仅在使用NaCl胁迫下生长的植物的花粉生产的OUC613植物中,谷物的肥力显着降低,这表明OUC613的低谷物肥力主要归因于花粉肥力的降低。使用QTL-seq与外显子组捕获测序和OUE812与OUC613之间杂交的重组自交系的复合区间作图,我们确定了2H染色体上的QTL(qRP-2Hb)。 QTL区域包括两个编码与雄性不育相关的F-box蛋白和TIFY蛋白的基因,突显了该区域对于在盐胁迫下维持谷物育性的重要性。

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