首页> 外文期刊>Frontiers in Plant Science >Divergent Hd1, Ghd7, and DTH7 Alleles Control Heading Date and Yield Potential of Japonica Rice in Northeast China
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Divergent Hd1, Ghd7, and DTH7 Alleles Control Heading Date and Yield Potential of Japonica Rice in Northeast China

机译: Hd1 Ghd7 DTH7 等位基因控制等位基因的抽穗期和产量潜力

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The heading date is a vital factor in achieving a full rice yield. Cultivars with particular flowering behaviors have been artificially selected to survive in the long-day and low-temperature conditions of Northeast China. To dissect the genetic mechanism responsible for heading date in rice populations from Northeast China, association mapping was performed to identify major controlling loci. A genome-wide association study (GWAS) identified three genetic loci, Hd1 , Ghd7 , and DTH7 , using general and mixed linear models. The three genes were sequenced to analyze natural variations and identify their functions. Loss-of-function alleles of these genes contributed to early rice heading dates in the northern regions of Northeast China, while functional alleles promoted late rice heading dates in the southern regions of Northeast China. Selecting environmentally appropriate allele combinations in new varieties is recommended during breeding. Introducing the early indica rice’s genetic background into Northeast japonica rice is a reasonable strategy for improving genetic diversity.
机译:抽穗期对于实现水稻的丰产至关重要。已经人工选择了具有特定开花行为的品种,以在中国东北的长日低温条件下生存。为了剖析造成东北水稻种群抽穗期的遗传机制,进行了关联作图以鉴定主要的控制基因座。全基因组关联研究(GWAS)使用常规线性模型和混合线性模型确定了三个遗传基因座Hd1,Ghd7和DTH7。对这三个基因进行了测序,以分析自然变异并确定其功能。这些基因的功能缺失等位基因在中国东北北部的水稻抽穗期较早,而功能性等位基因在中国东北南部的水稻抽穗期较晚。建议在育种期间在新品种中选择适合环境的等位基因组合。将早in稻的遗传背景引入东北粳稻是提高遗传多样性的合理策略。

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