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Genetic-basis analysis of heterotic loci in Dongxiang common wild rice (Oryza rufipogon Griff.)

机译:东乡野生稻(Oryza rufipogon Griff。)杂种位点的遗传基础分析

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Heterosis is widely used in genetic crop improvement; however, the genetic basis of heterosis is incompletely understood. The use of whole-genome segregating populations poses a problem for establishing the genetic basis of heterosis, in that interactions often mask the effects of individual loci. However, introgression line (IL) populations permit the partitioning of heterosis into defined genomic regions, eliminating a major part of the genome-wide epistasis. In our previous study, based on mid-parental heterosis (HMP) value with single-point analysis, 42 heterotic loci (HLs) associated with six yield-related traits were detected in wild and cultivated rice using a set of 265 ILs of Dongxiang common wild rice (Oryza rufipogon Griff.). In this study, the genetic effects of HLs were determined as the combined effects of both additive and dominant gene actions, estimated from the performance values of testcross F1s and the dominance effects estimated from the HMP values of testcross F1s. We characterized the gene action type at each HL. Thirty-eight of the 42 HLs were over-dominant, and in the absence of epistasis, four HLs were dominant. Therefore, we favour that over-dominance is a major genetic basis of ‘wild-cultivar’ crosses at the single functional Mendelian locus level.
机译:杂种优势广泛用于遗传农作物改良。然而,杂种优势的遗传基础尚不完全清楚。全基因组隔离种群的使用为建立杂种优势的遗传基础提出了一个问题,因为相互作用通常掩盖了单个基因座的作用。但是,渗入系(IL)群体允许将杂种优势划分为确定的基因组区域,从而消除了全基因组上位性的主要部分。在我们先前的研究中,基于单亲分析的父母亲中间杂种优势(HMP)值,使用一套265种东乡普通种ILs在野生稻和栽培稻中检测到42个与六个产量相关性状相关的杂种位点(HLs)。野生稻(Oryza rufipogon Griff。)。在这项研究中,HL的遗传效应被确定为加性和显性基因作用的组合效应,这是根据testcross F1s的性能值估算的,而优势作用是根据testcross F1s的HMP值估算的。我们表征了每个HL的基因作用类型。 42个HL中有38个过剩,在没有上位性的情况下,有4个HL占优势。因此,我们赞成在单功能孟德尔基因座水平上,“优势优势”是“野生品种”杂交的主要遗传基础。

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