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首页> 外文期刊>Asian Journal of Plant Sciences >Molecular Detection of Quantitative Trait Loci for Leaf Chlorophyll Content at Different Growth-Stages of Rice ( Oryza sativa L.)
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Molecular Detection of Quantitative Trait Loci for Leaf Chlorophyll Content at Different Growth-Stages of Rice ( Oryza sativa L.)

机译:水稻不同生长阶段叶片叶绿素含量的数量性状位点的分子检测

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The objectives of present study are to identify and characterize QTLs for LCC at three different growth stages of rice. In present study, the Recombinant Inbred (RI) lines derived from Asominori ( Japonica )/IR 24 ( Indica ) were used to identify Quantitative Trait Loci (QTLs) for LCC at three growth stages (45-day-old seedling, maximum tillering and heading) in rice. Continuous variations and transgressive segregation for LCC were observed in the RI population, indicating that LCC was a quantitatively inherited trait at different growth stages of rice. Ten QTLs for LCC were identified and mapped to chromosomes 1(two QTLs), 3(two QTLs), 4, 5, 7(two QTLs), 11, 12, respectively, which accounted for 9.7-25.7% of the total phenotypic variation. Interestingly, non-common QTLs were detected at all three growth stages, clearly indicating that different QTLs control the LCC during growth intervals. In addition, the alleles at the eight QTLs ( q LCC-1-1, q LCC-1-2, q LCC-3-1, q LCC-3-2, q LCC-4, q LCC-7-1, q LCC-7-2 and q LCC-12) from Asominori and the remaining alleles at q LCC-5 and q LCC-11 from IR 24 contributed to the increase of LCC. The results and the tightly linked molecular markers that flank the QTLs detected in this study may be useful for improvement of photosynthetic ability at different growth stages of rice.
机译:本研究的目的是鉴定和表征水稻三个不同生长阶段的LCC QTL。在本研究中,使用了来自Asominori(Japonica)/ IR 24(Indica)的重组近交(RI)品系,在三个生长阶段(45天大的幼苗,最大分till期和最大分and期)确定了LCC的数量性状位点(QTL)。标题)。在RI群体中观察到LCC的连续变异和海侵分离,表明LCC是水稻不同生育阶段的数量遗传性状。确定了10个LCC的QTL,并将其分别定位到染色体1(两个QTL),3(两个QTL),4、5、7(两个QTL),11、12染色体,占总表型变异的9.7-25.7% 。有趣的是,在所有三个生长阶段都检测到了非共有的QTL,这清楚表明在生长间隔内,不同的QTL控制着LCC。此外,八个QTL(q LCC-1-1,q LCC-1-2,q LCC-3-1,q LCC-3-2,q LCC-4,q LCC-7-1,来自Asominori的q LCC-7-2和q LCC-12)以及来自IR 24的q LCC-5和q LCC-11的其余等位基因有助于LCC的增加。结果和在本研究中检测到的QTL侧翼紧密连接的分子标记,可能有助于提高水稻不同生育阶段的光合能力。

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