首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Lessons from natural variations: artificially induced heading date variations for improvement of regional adaptation in rice
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Lessons from natural variations: artificially induced heading date variations for improvement of regional adaptation in rice

机译:自然变化的课程:人工诱导改善水稻区域适应的标题差异

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Key messageNew strategy of breeding by modulating key heading date gene Ehd1 to enhance the variations of heading date regardless of genetic background for better adaptation to local environment in rice.AbstractFlowering time (or heading date) is an important quantitative trait in rice (Oryza sativa) that determines its adaptation to specific cultivation areas and growing seasons. However, breeding of flowering time is currently relying on laborious selections and combinations of different alleles of various genes. Here, we cloned a cis-variant allele of Ehd1 that regulated not only heading date but also yield potential. Genetic analysis revealed that Ehd1 acted downstream of Ghd7 as a negative regulator of yield potential, and expression divergence of Ehd1 negatively correlates with phenotype variations including heading date and grain yield. Moreover, regardless of genetic background, manipulations of the expression of a single gene, Ehd1, are sufficient for recreating beneficial heading date variations which could be subjected to the selection of best suitable lines for local environment conditions. Beyond a deeper understanding of transcriptional control of quantitative traits, this study provided an effective and flexible strategy for breeding rice cultivars to maximize grain production for any region of cultivation.
机译:通过调制关键标题基因EHD1育种育种策略的育种策略,以提高标题日期的变化,以便更好地适应水稻当地环境.Abstractwlow时间(或航向日期)是水稻(Oryza Sativa)的重要定量特征这决定了对特定栽培区域和生长季节的适应。然而,开花时间的繁殖目前依赖于各种基因的不同等位基因的艰苦选择和组合。在这里,我们克隆了EHD1的顺式变异等位基因,该等位基因不仅规定了标题日期,而且产生了潜在的潜力。遗传分析显示,EHD1作为屈服电位的负调节剂作用下游,EHD1的表达差异与表型变异负相关,包括标题日期和谷物产量。此外,无论遗传背景如何,单个基因的表达EHD1的操纵就足以重新创建有益的标题日期变化,这些日期变化可以受到最佳合适的局部环境条件的选择。除了对数量性状的转录控制的更深入了解,本研究提供了一种有效且灵活的育种水稻品种策略,以最大限度地提高任何培养区域的粮食产量。

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