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Genome-wide dissection of heterosis for yield traits in two-line hybrid rice populations

机译:两系杂交水稻群体产量性状杂种优势的全基因组解剖

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摘要

Heterosis has been widely utilized in agriculture and is important for world food safety. Many genetic models have been proposed as mechanisms underlying heterosis during the past century, yet more evidence is needed to support such models. To investigate heterosis in two-line hybrid rice, we generated a partial diallel crossing scheme, which consisted of approximately 500 F1 hybrids derived from 14 male sterile lines and 39 restorer lines. In this population, increased panicle number played the most important role in yield heterosis of hybrid rice. Genome-wide association studies identified many QTLs related to the yield traits of F1 hybrids, better paternal heterosis and special combining ability. Relevant genes, including Hd3a, qGL3, OsmiR156h, and LAX2, were identified as candidates within these QTLs. Nearly forty percent of the QTLs had only two genotypes in the F1 hybrids, mainly because the maternal lines were under intense selective pressure. Further analysis found male sterile lines and restorer lines made different superior allele contributions to F1 hybrids, and their contributions varied among different traits. These results extend our understanding of the molecular basis of heterosis in two-line hybrid rice.
机译:杂种优势已在农业中得到广泛利用,对世界食品安全至关重要。在过去的一个世纪中,已经提出了许多遗传模型作为杂种优势的基础机制,但是还需要更多的证据来支持这种模型。为了研究两系杂交水稻的杂种优势,我们产生了部分二元杂交计划,该计划由大约500个F14杂种组成,这些杂种来自14个雄性不育系和39个恢复系。在该群体中,穗数的增加在杂交水稻产量杂种优势中起着最重要的作用。全基因组关联研究确定了许多与F1杂种的产量性状,更好的父本杂种优势和特殊的结合能力有关的QTL。相关基因,包括Hd3a,qGL3,OsmiR156h和LAX2,被确定为这些QTL中的候选基因。 F1杂种中近40%的QTL仅具有两种基因型,主要是因为母系在强烈的选择压力下。进一步的分析发现,雄性不育系和恢复系对F1杂种具有不同的优势等位基因贡献,并且它们在不同性状之间的贡献也不同。这些结果扩展了我们对两系杂交稻杂种优势的分子基础的理解。

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