首页> 外文期刊>Field Crops Research >Detection of QTLs with main, epistatic and QTL x environment interaction effects for rice grain appearance quality traits using two populations of backcross inbred lines (BILs).
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Detection of QTLs with main, epistatic and QTL x environment interaction effects for rice grain appearance quality traits using two populations of backcross inbred lines (BILs).

机译:使用两个群体的回交自交系(BIL)检测具有主要,上位性和QTL x环境互作效应的QTL对稻米外观品质性状的影响。

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Quantitative trait loci (QTLs) of rice (Oryza sativa L.) grain appearance traits with additive, epistatic and QTL x environment (QE) interaction effects were studied using a mixed-model-based composite interval mapping (MCIM) method and two populations of back cross inbred lines (BILs) with a common maternal parent. In each of the populations, two or three main effects of QTLs were detected for grain length, width, length to width ratio, length of cooked rice, elongation ratio, elongation index and water absorption traits. The main effects of QTLs explained 12.4-43.9% and 20.4-50.4% of the variation of measured traits in the two populations, respectively. Some identified QTL clusters suggested that co-located QTL or maybe genes with pleiotropic effects could control these traits. When the QTLs detected for cooked versus milled rice were compared, it was found that the main QTLs with large effects for appearance in milled rice were on chromosomes 3 and 5, but those for appearance of cooked rice traits were on chromosome 6 close to the Wx gene. The phenotypic variations which were explained by the effects of the additive x additive x environment interaction (AAE) and additive x additive epistasis (AA) QTLs were less significant than those of the main QTLs. We conclude that although the major genes are frequent determinants of the rice grain appearance traits, the interactions between genes of minor effects may culminate in sizable effects on rice grain appearance traits. The information obtained in this study could be useful for manipulating the QTLs of these traits by molecular marker-assisted selection
机译:利用基于混合模型的复合区间映射(MCIM)方法和两个种群的水稻群体研究了具有加性,上位性和QTL x环境(QE)交互作用的水稻(Oryza sativa L.)谷物外观性状的数量性状基因座(QTL)。母系亲本的回交自交系(BIL)。在每个种群中,检测到QTL的两个或三个主要影响,即谷物的长度,宽度,长宽比,煮熟的米饭的长度,伸长率,伸长指数和吸水特性。 QTL的主要影响分别解释了两个种群中测得性状变异的12.4-43.9%和20.4-50.4%。一些已鉴定的QTL集群表明,同位QTL或具有多效性效应的基因可以控制这些性状。比较检测到的米饭和米饭的QTL,发现对米饭外观影响较大的主要QTL位于3号和5号染色体上,而对米饭性状外观的影响最大的QTL在靠近Wx的6号染色体上。基因。表型变异是由加性x加性x环境相互作用(AAE)和加性x加性上位性(AA)QTL的影响所解释的,但不如主要QTL显着。我们得出的结论是,尽管主要基因是水稻籽粒外观性状的常见决定因素,但次要作用基因之间的相互作用可能最终导致对水稻籽粒外观性状产生相当大的影响。在这项研究中获得的信息可能有助于通过分子标记辅助选择操作这些性状的QTL

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