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首页> 外文期刊>The Indian journal of genetics & plant breeding >Molecular mapping of quantitative trait loci for grain chalkiness in rice (Oryza sativa L.).
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Molecular mapping of quantitative trait loci for grain chalkiness in rice (Oryza sativa L.).

机译:水稻(Oryza sativa L.)稻米垩白度数量性状位点的分子作图。

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摘要

Chalkiness of rice grain is an important but undesirable quality component, which has a profound influence on milling, cooking and eating qualities. Therefore, it is one of the key factors which determine the market value of rice grains. In this study, QTL mapping to determine the genomic regions governing percent grain with white core (PGWC) and chalkiness score (CS) was conducted using a population of 310 RILs, generated from the cross Pusa 1266/Jaya. Both the parents were extremely contrasting with Pusa 1266 with fully chalky and Jaya with translucent grains. RILs were evaluated at IARI, New Delhi during Kharif 2008 and 2009 and at RBGRC, Aduthurai during Rabi 2009-10. Several QTL signals could be detected by single marker analysis. Among them, two QTLs, one each for PGWC and CS, were prominently detected by composite interval mapping between a marker interval RM 6273-RM204 on the short arm of chromosome 6. The QTL for PGWC, qPGWC6 was consistently detected during all the three seasons, explaining a phenotypic variation of 17.75%, 18.79% and 12.20% respectively. Similarly, the QTL for CS, qCS6 was also consistent across three seasons, accounting for a phenotypic variation of 24.3%, 24.75% and 24.03% respectively. Co-localization of both these QTLs may be representing a single genomic region, strongly implying the presence of Wxb locus in contributing to grain chalkiness of Pusa1266. The positive allele for the reduced grain chalkiness was contributed by Jaya. These results will be useful in fine mapping and validation of the identified QTLs.Digital Object Identifier http://dx.doi.org/10.5958/j.0975-6906.73.3.036
机译:稻米的垩白度是重要但不理想的品质成分,它对制粉,烹饪和进食的品质具有深远的影响。因此,它是决定稻米市场价值的关键因素之一。在这项研究中,使用从Pusa 1266 / Jaya杂交产生的310个RIL进行了QTL定位,以确定控制白粒百分比(PGWC)和白垩度得分(CS)的基因组区域。父母双方都与完全白垩的Pusa 1266和半透明谷物的Jaya形成鲜明对比。在2008年和2009年Kharif期间,在新德里的IARI和在Rabi 2009-10年期间的Aduthurai RBGRC对RIL进行了评估。通过单个标记分析可以检测到多个QTL信号。其中,通过6号染色体短臂上的标记间隔RM 6273-RM204之间的复合间隔作图显着地检测到两个QTL,分别用于PGWC和CS。在所有三个季节中均连续检测到PGWC和qPGWC6的QTL。 ,分别解释了表型变异为17.75%,18.79%和12.20%。同样,CS,qCS6的QTL在三个季节中也保持一致,分别代表了24.3%,24.75%和24.03%的表型变异。这两个QTL的共定位可能代表一个基因组区域,强烈暗示Wx b 基因座的存在有助于Pusa1266的垩白度。 Jaya贡献了减少谷物白垩化的正等位基因。这些结果对于确定的QTL的精细映射和验证很有用。数字对象标识符http://dx.doi.org/10.5958/j.0975-6906.73.3.036

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