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Genes that determine flower color: the role of regulatory changes in the evolution of phenotypic adaptations

机译:确定花色的基因:调节变化在表型适应进化中的作用

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A central goal of evolutionary genetics is to trace the causal pathway between mutations at particular genes and adaptation at the phenotypic level. The proximate objective is to identify adaptations through the analysis of molecular sequence data from specific candidate genes or their regulatory elements. In this paper, we consider the molecular evolution of floral color in the morning glory genus (Ipomoea) as a model for relating molecular and phenotypic evolution. To begin, flower color variation usually conforms to simple Mendelian transmission, thus facilitating genetic and molecular analyses. Population genetic studies of flower color polymorphisms in the common morning glory (Ipomoea purpurea) have shown that some morphs are subject to complex patterns of selection. Striking differences in floral color and morphology are also associated with speciation in the genus Ipomoea. The molecular bases for these adaptive shifts can be dissected because the biosynthetic pathways that determine floral pigmentation are well understood and many of the genes of flavonoid biosynthesis have been isolated and extensively studied. We present a comparative analysis of the level of gene expression in Ipomoea for several key genes in flavonoid biosynthesis. Specifically we ask: how frequently are adaptive shifts in flower color phenotypes associated with changes in regulation of gene expression versus mutations in structural genes? The results of this study show that most species differences in this crucial phenotype are associated with changes in the regulation of gene expression.
机译:进化遗传学的主要目标是追踪特定基因突变与表型适应之间的因果关系。最接近的目标是通过分析来自特定候选基因或其调控元件的分子序列数据来确定适应性。在本文中,我们将牵牛花属(Ipomoea)中花色的分子进化作为与分子和表型进化相关的模型。首先,花的颜色变化通常符合简单的孟德尔传递,从而有助于遗传和分子分析。常见牵牛花(Ipomoea purpurea)中花朵颜色多态性的群体遗传研究表明,某些形态易受复杂的选择模式影响。花色和形态的显着差异还与番薯属的物种形成有关。可以剖析这些适应性转变的分子基础,因为众所周知,决定花卉色素沉着的生物合成途径,并且已经分离并广泛研究了黄酮类生物合成的许多基因。我们提供了对黄酮生物合成中几个关键基因在番薯中基因表达水平的比较分析。具体来说,我们会问:与基因表达调控相对于结构基因突变相关的花色表型适应性变化多久发生一次?这项研究的结果表明,这种关键表型中的大多数物种差异都与基因表达调控的变化有关。

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