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Mapping of QTLs Controlling Grain Shape and Populations Construction Derived from Related Residual Heterozygous Lines in Rice

机译:水稻相关杂种杂种优势品系的QTL定位及群体结构的QTL定位

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Grain shape is usually characterized by grain length (GL), grain width (GW), grain thickness (GT) and length to width ratio (LWR), and controlled by quantitative trait locus (QTL). In this paper, QTL analysis was performed using an F2 population and an F8 recombinant inbred line (RIL) population from a cross Xiang743/Katy. A total of 38 QTLs for grain shape were detected and eight of them were repeatedly identified in both populations. Seven for GL, five for GW, five for GT, and eight for LWR were detected in F2 population, explaining totally phenotypic variance of 94.51%, 61.52%, 54.33% and 91.84%, respectively. Five for GL, three for GW, and five for LWR were detected in RILpopulation, explaining totally phenotypic variance of 39.83%, 37.52% and 36.71%, respectively. Many QTLs were located in similar intervals, contributing to complicated trait correlation. A few QTLs were mapped in intervals coincided with previously cloned genes associated with grain size. Two residual heterozygous lines (RHLs) were selected out on the basis of newly identified loci, populations derived from RHLs were constructed for fine mapping QTLs associated with grain shape.
机译:晶粒形状通常以晶粒长度(GL),晶粒宽度(GW),晶粒厚度(GT)和长宽比(LWR)为特征,并由数量性状位点(QTL)控制。在本文中,使用来自Xiang743 / Katy的F2种群和F8重组自交系(RIL)种群进行QTL分析。共检测到38个粒状QTL,并在两个种群中重复鉴定了其中的8个。在F2人群中检测到GL的7个,GW的5个,GT的5个,LWR的8个,说明表型差异分别为94.51%,61.52%,54.33%和91.84%。在RIL人群中检测到GL的5个,GW的3个和LWR的5个,分别解释了表型差异分别为39.83%,37.52%和36.71%。许多QTL位于相似的区间,导致复杂的性状相关。间隔映射一些QTL,这些间隔与先前克隆的与晶粒大小相关的基因相吻合。根据新确定的基因座,选择了两个残留的杂合子系(RHL),构建了从RHL衍生的种群,以便对与粒形相关的QTL进行精细定位。

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