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Evolution of gene expression and expression plasticity in long-term experimental populations of Drosophila melanogaster maintained under constant and variable ethanol stress

机译:在恒定和可变乙醇胁迫下维持的长期实验群的基因表达及表达可塑性的演变

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摘要

Gene expression responds to the environment, and can also evolve rapidly in response to altered selection regimes. Little is known, however, about the extent to which evolutionary adaptation to a particular type of stress involves changes in the within-generation (“plastic”) responses of gene expression to the stress. We used microarrays to quantify gene expression plasticity in response to ethanol in laboratory populations of Drosophila melanogaster differing in their history of ethanol exposure. Two populations (“R” populations) were maintained on regular medium, two (“E”) were maintained on medium supplemented with ethanol, and two (“M”) were maintained in a mixed regime in which half of the population was reared on one medium type, and half on the other, each generation. After more than 300 generations, embryos from each population were collected and exposed to either ethanol or water as a control, and RNA was extracted from the larvae shortly after hatching. Nearly 2000 transcripts showed significant within-generation responses to ethanol exposure. Evolutionary history also affected gene expression: the E and M populations were largely indistinguishable in expression, but differed significantly in expression from the R populations for over 100 transcripts, the majority of which did not show plastic responses. Notably, in no case was the interaction between selection regime and ethanol exposure significant after controlling for multiple comparisons, indicating that adaptation to ethanol in the E and M populations did not involve substantial changes in gene expression plasticity. The results give evidence that expression plasticity evolves considerably more slowly than mean expression.
机译:基因表达对环境有反应,并且也可以响应改变的选择机制而迅速进化。然而,关于特定类型压力的进化适应涉及基因表达对压力的代内(“塑性”)响应变化的程度知之甚少。我们使用微阵列来量化果蝇在实验室中的乙醇暴露史不同的实验室人群中响应乙醇的基因表达可塑性。将两个种群(“ R”种群)维持在常规培养基上,将两个种群(“ E”)维持在补充有乙醇的培养基上,将两个种群(“ M”)维持在混合制度下,其中一半种群在一种是中等类型,另一半是另一种。经过300多个世代,收集了每个种群的胚胎并将其暴露于乙醇或水中作为对照,并在孵化后不久从幼虫中提取了RNA。将近2000个转录本显示出显着的一代内对乙醇暴露的反应。进化史也影响了基因表达:E和M群体的表达在很大程度上没有区别,但是对于R群体而言,超过100个转录本的表达有显着差异,其中大多数转录本没有表现出可塑性。值得注意的是,在控制多重比较后,选择方案和乙醇暴露之间的相互作用都没有显着性,表明在E和M人群中对乙醇的适应性不涉及基因表达可塑性的实质性变化。结果提供了证据,表达可塑性的发展比平均表达慢得多。

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