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Complexities of gene expression patterns in natural populations of an extremophile fish (Poecilia mexicana Poeciliidae)

机译:极端嗜水鱼类(Poecilia mexicanaPoeciliidae)自然种群中基因表达模式的复杂性

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摘要

Variation in gene expression can provide insights into organismal responses to environmental stress and physiological mechanisms mediating adaptation to habitats with contrasting environmental conditions. We performed an RNA-sequencing experiment to quantify gene expression patterns in fish adapted to habitats with different combinations of environmental stressors, including the presence of toxic hydrogen sulphide (H2S) and the absence of light in caves. We specifically asked how gene expression varies among populations living in different habitats, whether population differences were consistent among organs, and whether there is evidence for shared expression responses in populations exposed to the same stressors. We analysed organ-specific transcriptome-wide data from four ecotypes of Poecilia mexicana (nonsulphidic surface, sulphidic surface, nonsulphidic cave and sulphidic cave). The majority of variation in gene expression was correlated with organ type, and the presence of specific environmental stressors elicited unique expression differences among organs. Shared patterns of gene expression between populations exposed to the same environmental stressors increased with levels of organismal organization (from transcript to gene to physiological pathway). In addition, shared patterns of gene expression were more common between populations from sulphidic than populations from cave habitats, potentially indicating that physiochemical stressors with clear biochemical consequences can constrain the diversity of adaptive solutions that mitigate their adverse effects. Overall, our analyses provided insights into transcriptional variation in a unique system, in which adaptation to H2S and darkness coincide. Functional annotations of differentially expressed genes provide a springboard for investigating physiological mechanisms putatively underlying adaptation to extreme environments.
机译:基因表达的变化可以提供对机体对环境压力的反应以及介导对环境条件相反的生境适应的生理机制的见解。我们进行了RNA测序实验,以量化鱼类适应不同环境应激源(包括有毒硫化氢(H2S)的存在和洞穴中无光)的栖息地的基因表达模式。我们特别询问了基因表达在生活在不同栖息地的种群之间如何变化,种群差异在器官之间是否一致,以及是否有证据表明暴露于相同应激源的种群有共同的表达反应。我们分析了Poecilia mexicana的四种生态类型(非硫表面,硫表面,非硫洞穴和硫洞穴)的器官特定转录组范围的数据。基因表达的大多数变化与器官类型相关,并且特定环境应激源的存在引起器官之间独特的表达差异。暴露于相同环境压力下的种群之间基因表达的共享模式随着生物组织水平的升高而增加(从转录本到基因再到生理途径)。此外,在硫化物种群中比在洞穴栖息地种群中,基因表达的共享模式更为普遍,这可能表明具有明显生化后果的生理化学应激源可以限制减轻其不利影响的适应性解决方案的多样性。总体而言,我们的分析提供了对独特系统中转录变异的见解,在该系统中,对H2S和黑暗的适应相吻合。差异表达基因的功能注释为研究潜在地适应极端环境的生理机制提供了跳板。

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