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Allele-Specific Assay Reveals Functional Variation in the Chalcone Synthase Promoter of Arabidopsis thaliana That Is Compatible with Neutral Evolution

机译:等位基因特异性分析揭示了拟南芥查尔酮合酶启动子中的功能变异与中性进化兼容。

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摘要

Promoters are thought to play a major role in adaptive evolution, yet little is known about the regulatory diversity within species, where microevolutionary processes take place. To investigate the potential for evolutionary change in the promoter of a gene, we examined nucleotide and functional variation of the Chalcone Synthase (CHS) cis-regulatory region in Arabidopsis thaliana. CHS is the branch point enzyme of a biosynthetic pathway that leads to the production of secondary metabolites influencing the interaction between the plant and its environment. We found that nucleotide diversity in the intergenic region encompassing the CHS promoter (π = 0.003) is compatible with neutral expectations. To quantify functional variation specifically as a result of cis-regulation of CHS mRNA levels, we developed an assay using F1 individuals in which distinct promoter alleles are compared within a common trans-regulatory background. We examined functional cis-regulatory variation in response to different stimuli representing a variety of CHS transcriptional environments (dark, light, and insect feeding). We observed extensive functional variation, some of which appeared to be independent of the trans-regulatory background. Comparison of functional and nucleotide diversity suggested a candidate point mutation that may explain cis-regulatory differences in light response. Our results indicate that functional changes in promoters can arise from a few mutations, pointing to promoter regions as a fundamental determinant of functional genetic variation.
机译:人们认为启动子在适应性进化中起主要作用,但对于物种内部发生微进化过程的调节多样性知之甚少。为了研究基因启动子进化变化的潜力,我们检查了拟南芥中查尔酮合酶(CHS)顺式调节区的核苷酸和功能变异。 CHS是生物合成途径的分支点酶,可导致影响植物及其环境之间相互作用的次生代谢产物的产生。我们发现包含CHS启动子(π= 0.003)的基因间区域中的核苷酸多样性与中性预期兼容。为了量化由于顺式调节CHS mRNA水平而引起的功能变异,我们开发了一种使用F1个体的测定方法,其中在共同的反式调控背景下比较了不同的启动子等位基因。我们检查了代表不同CHS转录环境(黑暗,光明和昆虫摄食)的不同刺激,对顺式功能的调控变化。我们观察到广泛的功能变异,其中一些似乎独立于反式调节背景。功能和核苷酸多样性的比较表明,候选点突变可以解释光反应中的顺式调节差异。我们的结果表明,启动子的功能变化可能是由一些突变引起的,表明启动子区域是功能遗传变异的基本决定因素。

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