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首页> 外文期刊>Molecular Breeding >Hd-q, a novel allele of Ef7 from a Chinese rice landrace, confers weak photoperiod sensitivity and improves local adaptability and yield potential
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Hd-q, a novel allele of Ef7 from a Chinese rice landrace, confers weak photoperiod sensitivity and improves local adaptability and yield potential

机译:Hd-q是来自中国水稻地方品种的Ef7的新等位基因,赋予弱的光周期敏感性并提高了局部适应性和产量潜力

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摘要

Heading date is a major determinant of adaptability and yield potential in rice (Oryza sativa L.) and is influenced by photoperiod. Among chromosome segment substitution lines, the introgression line C63 contains a segment of the short arm of chromosome 6 from indica Qingluzhan 11 in the japonica Nipponbare background and exhibits a delayed heading date under both long day (LD) and short day (SD) natural field conditions. This study demonstrates that the late heading date of the C63 line is controlled by a single recessive gene, Heading date from Qingluzhan 11 (Hd-q). Hd-q was mapped to a region of less than 43.7 kb. Complementation testing revealed that Ef7 (LOC_Os06g05060), a homolog of Arabidopsis ELF3, is the candidate gene, while Hd-q is a new allele of Ef7. Sequence alignment revealed at least five Ef7 alleles among 11 rice cultivars based on polymorphism in the coding region. Unlike other alleles, Hd-q has a single nucleotide polymorphism (T/A) in exon 2, which leads to premature termination of translation. In addition to delayed heading date, Hd-q has pleiotropic effects on major agronomic characteristics, which were determined by comparing the near-isogenic line, NIL (Hd-q), with its recurrent parent Nipponbare. The Hd-q allele improved grain yield under both LD and SD conditions and in different geographical regions. Finally, a dCAPS (derived cleaved amplified polymorphic sequence) marker was developed based on the T/A polymorphism, and will be useful for introgression of the Hd-q allele via marker-assisted selection. The Hd-q allele is a useful target for the improvement of rice adaptation and production, especially at low latitudes.
机译:抽穗期是水稻(Oryza sativa L.)的适应性和产量潜力的主要决定因素,并且受光周期的影响。在染色体片段替换系中,基因渗入系C63包含来自粳稻日本晴背景中的Qing清轻占11号6号染色体短臂的片段,并且在长日(LD)和短日(SD)自然场下均显示出延迟的前进日期。条件。这项研究表明,C63品系的后期抽穗期受一个隐性基因控制,即从青绿站11(Hd-q)抽穗期。 Hd-q被映射到小于43.7 kb的区域。互补测试显示,拟南芥ELF3的同源物Ef7(LOC_Os06g05060)是候选基因,而Hd-q是Ef7的新等位基因。序列比对揭示了基于编码区多态性的11个水稻品种中的至少5个Ef7等位基因。与其他等位基因不同,Hd-q在外显子2中具有单核苷酸多态性(T / A),导致翻译过早终止。除抽穗期延长外,Hd-q还对主要农艺特性产生了多效性效应,这是通过将近等基因系NIL(Hd-q)与它的亲本Nipponbare进行比较确定的。 Hd-q等位基因在LD和SD条件下以及不同地理区域均可提高谷物产量。最后,基于T / A多态性开发了dCAPS(衍生的裂解的扩增多态性序列)标记,该标记将通过标记辅助选择用于Hd-q等位基因的渗入。 Hd-q等位基因是改善水稻适应性和产量的有用目标,特别是在低纬度地区。

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