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From the Cover: Overdominant quantitative trait loci for yield and fitness in tomato

机译:从封面开始:番茄产量和适应性的主要数量性状基因座

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摘要

Heterosis, or hybrid vigor, is a major genetic force that contributes to world food production. The genetic basis of heterosis is not clear, and the importance of loci with overdominant (ODO) effects is debated. One problem has been the use of whole-genome segregating populations, where interactions often mask the effects of individual loci. To assess the contribution of ODO to heterosis in the absence of epistasis, we carried out quantitative genetic and phenotypic analyses on a population of tomato (Solanum lycopersicum) introgression lines (ILs), which carry single marker-defined chromosome segments from the distantly related wild species Solanum pennellii. The ILs revealed 841 quantitative trait loci (QTL) for 35 diverse traits measured in the field on homozygous and heterozygous plants. ILs showing greater reproductive fitness were characterized by the prevalence of ODO QTL, which were virtually absent for the nonreproductive traits. ODO can result from true ODO due to allelic interactions of a single gene or from pseudoODO that involves linked loci with dominant alleles in repulsion. The fact that we detected dominant and recessive QTL for all phenotypic categories but ODO only for the reproductive traits indicates that pseudoODO due to random linkage is unlikely to explain heterosis in the ILs. Thus, we favor the true ODO model involving a single functional Mendelian locus. We propose that the alliance of ODO QTL with higher reproductive fitness was selected for in evolution and was domesticated by man to improve yields of crop plants.
机译:杂种优势或杂种优势是导致世界粮食生产的主要遗传力量。杂种优势的遗传基础尚不清楚,并且具有显性(ODO)效应的基因座的重要性尚有争议。一个问题是使用全基因组隔离种群,其中相互作用常常掩盖了单个基因座的作用。为了评估在没有上位性的情况下ODO对杂种优势的贡献,我们对番茄(Solanum lycopersicum)渗入系(ILs)的种群进行了定量遗传和表型分析,该种群带有来自远缘野生动物的单个标记定义的染色体片段茄属茄属。 IL揭示了纯合和杂合植物在田间测量的35个不同性状的841个数量性状位点(QTL)。表现出更高的生殖适应性的白介素的特征是ODO QTL的普遍存在,而这些非生殖性状实际上并不存在。 ODO可能是由于单个基因的等位基因相互作用导致的真正ODO引起的,也可能是由于假想ODO导致的,该假ODO涉及连锁基因座与排斥等位基因。我们检测到所有表型类别的显性和隐性QTL,但仅针对生殖性状进行ODO的事实表明,由于随机连锁而产生的pseudoODO不可能解释IL的杂种优势。因此,我们赞成涉及单个功能孟德尔基因座的真正的ODO模型。我们建议在进化中选择具有更高生殖适应性的ODO QTL联盟,并通过人工驯化以提高农作物的产量。

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