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Positive Selection at the Polyhomeotic Locus Led to Decreased Thermosensitivity of Gene Expression in Temperate Drosophila melanogaster

机译:在温和的果蝇的基因表达的热敏感性降低导致多顺势基因座位上的正选择。

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摘要

Drosophila melanogaster as a cosmopolitan species has successfully adapted to a wide range of different environments. Variation in temperature is one important environmental factor that influences the distribution of species in nature. In particular for insects, which are mostly ectotherms, ambient temperature plays a major role in their ability to colonize new habitats. Chromatin-based gene regulation is known to be sensitive to temperature. Ambient temperature leads to changes in the activation of genes regulated in this manner. One such regulatory system is the Polycomb group (PcG) whose target genes are more expressed at lower temperatures than at higher ones. Therefore, a greater range in ambient temperature in temperate environments may lead to greater variability (plasticity) in the expression of these genes. This might have detrimental effects, such that positive selection acts to lower the degree of the expression plasticity. We provide evidence for this process in a genomic region that harbors two PcG-regulated genes, () and . We found a signature of positive selection in this gene region in European populations of D. melanogaster and investigated the region by means of reporter gene assays. The target of selection is located in the intergenic fragment between the two genes. It overlaps with the promoters of both genes and an experimentally validated Polycomb response element (PRE). This fragment harbors five sequence variants that are highly differentiated between European and African populations. The African alleles confer a temperature-induced plasticity in gene expression, which is typical for PcG-mediated gene regulation, whereas thermosensitivity is reduced for the European alleles.
机译:果蝇是一种世界性物种,已成功地适应了多种不同的环境。温度变化是影响自然界物种分布的重要环境因素之一。特别是对于昆虫(大多数是外热),环境温度在其定居新栖息地的能力中起着重要作用。已知基于染色质的基因调节对温度敏感。环境温度导致以这种方式调节的基因的激活发生变化。一种这样的调节系统是Polycomb组(PcG),其靶基因在较低温度下比在较高温度下更多地表达。因此,在温带环境中更大的环境温度范围可能导致这些基因表达的更大变异性(可塑性)。这可能会产生不利影响,例如,积极选择会降低表达可塑性的程度。我们在包含两个受PcG调控的基因()和的基因组区域为这一过程提供了证据。我们在D. melanogaster的欧洲人群中的该基因区域中发现了一个阳性选择的标志,并通过报告基因检测手段对该区域进行了调查。选择的目标位于两个基因之间的基因间片段中。它与两个基因的启动子和经过实验验证的Polycomb反应元件(PRE)重叠。该片段包含五个在欧洲和非洲人群中高度区分的序列变体。非洲等位基因在基因表达中赋予温度诱导的可塑性,这是PcG介导的基因调控的典型特征,而欧洲等位基因的热敏感性降低。

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