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Genetic effect of a new allele for the flowering time locus Ghd7 in rice

机译:新等位基因在水稻中开花时间基因座的遗传效应

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摘要

The optimization of flowering time is a key aspect in maximizing grain productivity in rice. Allelic variations in genes for flowering time are major drivers in the wide adaptability of cultivated rice around the world. Here, we identified a novel allele of flowering time gene Grain number, plant height and heading date 7 (Ghd7). Loss-of-function ghd7, Ghd7-0a, is important for extremely early flowering time for adaptability to cultivation in Hokkaido, Japan. However, the rice variety Sorachi lacks a key functional nucleotide polymorphism of Ghd7, which results in a loss of function of the gene. Based on the sequence of Ghd7 allele in Sorachi, we identified the insertion of a transposon-like sequence at an upstream site of Ghd7. Segregation analysis using an F2 population derived from the cross between Hoshinoyume and Sorachi demonstrated that the Ghd7 locus contributed to extremely early flowering time in Sorachi. This Ghd7 allele in Sorachi showed a weak function in terms of delay of flowering time, compared with loss-of-function allele, and a distinct distribution in northern Japan.
机译:开花时间的优化是大米籽粒生产率最大化的关键方面。开花时间基因的等位基因变异是世界各地栽培稻的广泛适应性的主要驱动因素。在这里,我们确定了开花时间基因粒度,植物高度和航向日期7(GHD7)的新型等位基因。函数损失GHD7,GHD7-0A,对于日本北海道栽培的极其早期开花时间很重要。然而,水稻品种Sorachi缺乏GHD7的关键功能核苷酸多态性,导致基因的功能丧失。基于Sorachi的GHD7等位基因的序列,我们确定了在GHD7的上游部位处插入转座子样序列。使用来自Hoshinoyume和Sorachi之间的交叉的F2群体的分离分析证明了GHD7基因座在索拉西的极度开花时间促使。索拉西的这个GHD7等位基因在开花时间的延迟方面表现出弱功能,而与职能损失等位基因相比,以及日本北部的不同分布。

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