首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Detection of a quantitative trait locus controlling carbon isotope discrimination and its contribution to stomatal conductance in japonica rice
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Detection of a quantitative trait locus controlling carbon isotope discrimination and its contribution to stomatal conductance in japonica rice

机译:控制碳同位素判别的数量性状位点及其对粳稻气孔导度的贡献

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Increasing leaf photosynthesis offers a possible way to improve yield potential in rice (Oryza sativa L.). Carbon isotope discrimination (Delta(13)C) has potential as an indirect selection criterion. In this study, we searched for quantitative trait loci (QTLs) controlling Delta(13)C, and assessed their association with leaf photosynthesis. Substitution mapping by using chromosome segment substitution lines (CSSLs), that carry segments from the indica cultivar Kasalath in the genetic background of the japonica cultivar Koshihikari, identified genomic regions affecting Delta(13)C on chromosomes (Chr.) 2, 3, 6, 7, and 12. One of the CSSLs, SL208, in which most regions on Chr. 3 were substituted with Kasalath segments, showed higher leaf stomatal conductance for CO(2) (g (s)) and Delta(13)C than Koshihikari during the vegetative stage although leaf photosynthetic rate did not differ between them. These results suggest an association between Delta(13)C and g (s). To test this association, we performed a QTL analysis for Delta(13)C at vegetative and heading stages in an F(2) population derived from a cross between SL208 and Koshihikari. The results confirmed a QTL controlling Delta(13)C on the long arm of Chr. 3. By using a near-isogenic line specific to Hd6, we ruled out the possibility that variation in Delta(13)C was generated through the pleiotropic effect of heading date.
机译:增加叶片的光合作用为提高水稻(Oryza sativa L.)的产量潜力提供了一种可能的方法。碳同位素歧视(Delta(13)C)有潜力作为间接选择标准。在这项研究中,我们搜索了控制Delta(13)C的数量性状基因座(QTL),并评估了它们与叶片光合作用的关系。通过使用染色体片段替换系(CSSLs)进行的置换图谱分析,该片段携带来自粳稻品种Koshihikari遗传背景中的d稻品种Kasalath的片段,确定了影响染色体(Chr。)2、3、6上Delta(13)C的基因组区域。 ,7和12。CSSL之一SL208,其中Chr上的大多数区域都位于其中。 3个被Kasalath段所取代,在营养阶段,尽管其光合速率没有差异,但对CO(2)(g(s))和Delta(13)C的叶片气孔电导率比Koshihikari更高。这些结果表明Delta(13)C与g(s)之间存在关联。为了测试这种关联,我们对来自SL208和越光(Koshihikari)之间杂交的F(2)种群在营养和抽穗期进行了Delta(13)C的QTL分析。结果证实了控制Chr长臂上的Delta(13)C的QTL。 3.通过使用特定于Hd6的近等基因系,我们排除了通过抽穗期的多效效应产生Delta(13)C变异的可能性。

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