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首页> 外文期刊>Plant Breeding >Dissection of the genetic architecture for grain quality-related traits in three RIL populations of maize (Zea mays L.)
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Dissection of the genetic architecture for grain quality-related traits in three RIL populations of maize (Zea mays L.)

机译:三种RIL玉米(Zea mays L.)籽粒品质相关性状的遗传结构解剖

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摘要

To manipulate the composition of the maize kernel to meet future needs, an understanding of the molecular regulation of kernel quality-related traits is required. In this study, the quantitative trait loci (QTL) for the concentrations of grain protein, starch and oil were identified using three sets of RIL populations in three environments. The genetic maps and the initial QTL were integrated using meta-analyses. A total of 38 QTL were identified, including 15 in population 1, 12 in population 2 and 11 in population 3. The individual effects ranged from 2.87% to 13.11% of the phenotypic variation, with seven QTL each contributing over 10%. One common QTL was found for the concentrations of grain protein and starch in bin 3.09 in the three environments and the three RIL populations. Of the 38 initial QTL, 22 were integrated into eight mQTL by meta-analysis. mQTL3 and mQTL8 of the key mQTL in which the initial QTL displayed R-2>10% included six and three initial QTL for grain protein and starch concentrations from two or three populations, respectively. These results will provide useful information for marker-assisted selection to improve the quality of the maize kernel.
机译:为了操纵玉米籽粒的组成以满足未来的需求,需要了解与籽粒品质相关性状的分子调控。在这项研究中,使用三种环境下的三组RIL群体鉴定了谷物蛋白质,淀粉和油脂浓度的定量性状位点(QTL)。使用荟萃分析整合了遗传图谱和初始QTL。共鉴定出38个QTL,包括种群1中的15个,种群2中的12个和种群3中的11个。单个效应的影响范围为表型变异的2.87%至13.11%,其中七个QTL各自贡献超过10%。在三个环境和三个RIL种群中,发现了一个常见的QTL,用于检测bin 3.09中谷物蛋白质和淀粉的浓度。通过荟萃分析,在38个初始QTL中,有22个被整合为8个mQTL。初始QTL显示R-2> 10%的关键mQTL的mQTL3和mQTL8分别包括来自两个或三个种群的六个和三个初始QTL,分别用于谷物蛋白和淀粉浓度。这些结果将为标记辅助选择以改善玉米粒的质量提供有用的信息。

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