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Differentiation, evolution and utilization of natural alleles for cold adaptability at the reproductive stage in rice

机译:水稻生殖阶段对自然等位基因对自然等位基因的分化,进化和利用

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摘要

Genetic studies on cold tolerance at the reproductive stage in rice could lead to significant reductions in yield losses. However, knowledge about the genetic basis and adaptive differentiation, as well as the evolution and utilization of the underlying natural alleles, remains limited. Here, 580 rice accessions in two association panels were used to perform genome‐wide association study, and 156 loci associated with cold tolerance at the reproductive stage were identified. Os01g0923600 and Os01g0923800 were identified as promising candidate genes in qCTB1t, a major associated locus. Through population genetic analyses, 22 and 29 divergent regions controlling cold adaptive differentiation inter‐subspecies (Xian/Indica and Geng/Japonica) and intra‐Geng, respectively, were identified. Joint analyses of four cloned cold‐tolerance genes showed that they had different origins and utilizations under various climatic conditions. bZIP73 and OsAPX1 differentiating inter‐subspecies evolved directly from wild rice, whereas the novel mutations CTB4a and Ctb1 arose in Geng during adaptation to colder climates. The cold‐tolerant Geng accessions have undergone stronger selection under colder climate conditions than other accessions during the domestication and breeding processes. Additive effects of dominant allelic variants of four identified genes have been important in adaptation to cold in modern rice varieties. Therefore, this study provides valuable information for further gene discovery and pyramiding breeding to improve cold tolerance at the reproductive stage in rice.
机译:水稻生殖阶段耐寒性耐寒性的遗传研究可能导致产量损失的显着降低。然而,关于遗传基础和适应性分化的知识以及潜在的自然等位基因的进化和利用仍然有限。这里,使用两种关联面板中的580种稻米净化,用于进行基因组 - 宽的关联研究,并确定了与生殖阶段的耐寒耐寒相关的156个基因座。 OS01G0923600和OS01G0923800被鉴定为QCTB1T中有前景的候选基因,一个主要的相关基因座。通过群体遗传分析,分别鉴定了控制冷自适应分化间(Xian / Indica和Genonga)和intra-Geng的不同区域。四个克隆的耐寒基因的联合分析表明,在各种气候条件下它们具有不同的起源和利用。 BZIP73和OSAPX1差异地从野生米直接进化,而新的突变CTB4A和CTB1在适应较冷的气候期间在GENG中出现。冷酷的庚蛋格肝脏在寒冷的气候条件下,在驯化和繁殖过程中的其他途径比其他申请更强的选择。中鉴定基因的主要等位基因变体的添加剂效应对于在现代水稻品种的寒冷方面具有重要作用。因此,本研究为进一步的基因发现和极其育种提供了有价值的信息,从而改善水稻生殖阶段的耐寒性耐寒性。

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