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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Minor quantitative trait loci underlie floral traits associated with mating system divergence in Mimulus [Review]
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Minor quantitative trait loci underlie floral traits associated with mating system divergence in Mimulus [Review]

机译:次要数量性状基因座是与Mi中交配系统差异相关的花性状的基础[综述]

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摘要

The genetic basis of species differences provides insight into the mode and tempo of phenotypic divergence. We investigate the genetic basis of floral differences between two closely related plant taxa with highly divergent mating systems, Mimulus guttatus (large-flowered outcrosser) and M. nasutus (small-flowered selfer). We had previously constructed a framework genetic linkage map of the hybrid genome containing 174 markers spanning approximately 1800 cM on 14 linkage groups. In this study, we analyze the genetics of 16 floral, reproductive, and vegetative characters measured in a large segregating M. nasutus X M. guttatus F, population (N = 526) and in replicates of the parental lines and F] hybrids. Phenotypic analyses reveal strong genetic correlations among floral traits and epistatic breakdown of male and female fertility traits in the F, hybrids. We use multitrait composite interval mapping to jointly locate and characterize quantitative trait loci (QTLs) underlying interspecific differences in seven floral traits. We identified 24 floral QTLs, most of which affected multiple traits. The large number of QTLs affecting each trait (mean 13, range 11-15) indicates a strikingly polygenic basis for floral divergence in this system. In general, QTL effects are small relative to both interspecific differences and environmental variation within genotypes, ruling out QTLs of major effect as contributors to floral divergence between M. guttatus and M. nasutus. QTLs show no pattern of directional dominance. Floral characters associated with pollinator attraction (corolla width) and self-pollen deposition (stigma-anther distance) share several pleiotropic or linked QTLs, but unshared QTLs may have allowed selfing to evolve independently from flower size. We discuss the polygenic nature of divergence between M. nasutus and M. guttatus in light of theoretical work on the evolution of: selfing, genetics of adaptation, and maintenance of variation within populations. [References: 106]
机译:物种差异的遗传基础为表型差异的模式和速度提供了见识。我们调查了两个高度相关的交配系统密切相关的植物类群之间的花卉差异的遗传基础,Mimulus guttatus(大花异型杂交)和M. nasutus(小花自交系)。我们之前已经构建了杂交基因组的框架遗传连锁图谱,该图谱包含14个连锁组上的174个标记,跨度约为1800 cM。在这项研究中,我们分析了16个花卉,生殖和营养性状的遗传,这些遗传性状是在一个大型的纳豆分离株X guttatus F,种群(N = 526)以及亲本系和F]杂种的复制品中测得的。表型分析显示,F,杂种的花性状与雄性和雌性育性性状的上位分解之间有很强的遗传相关性。我们使用多性状复合区间作图来共同定位和表征七个花性状间种间差异的定量性状基因座(QTL)。我们鉴定了24个花卉QTL,其中大多数影响多个性状。影响每个性状的大量QTL(平均值13,范围11-15)表明该系统中花卉差异的显着多基因基础。通常,相对于种间差异和基因型内的环境变化而言,QTL效应较小,排除了主要效应的QTL导致了guttatus和Nasutus之间的花卉发散。 QTL没有显示方向性主导的模式。与授粉媒介吸引力(花冠宽度)和自花粉沉积(柱头-花药距离)相关的花卉特征共享多个多效性或连锁QTL,但未共享的QTL可能使自交独立于花的大小演变。我们根据对以下方面的进化的理论工作来讨论纳苏支原体和古塔支原体之间差异的多基因性质:自交,适应遗传学和种群内变异的维持。 [参考:106]

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