首页> 外文期刊>Evolution: International Journal of Organic Evolution >Pervasive gene expression responses to a fluctuating diet in Drosophila melanogaster: The importance of measuring multiple traits to decouple potential mediators of life span and reproduction
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Pervasive gene expression responses to a fluctuating diet in Drosophila melanogaster: The importance of measuring multiple traits to decouple potential mediators of life span and reproduction

机译:普及基因表达对果蝇的波动饮食的反应:测量多种性状以解耦潜在寿命和繁殖的潜在介面的重要性

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摘要

Phenotypic plasticity is an important concept in life-history evolution, and most organisms, including Drosophila melanogaster, show a plastic life-history response to diet. However, little is known about how these life-history responses are mediated. In this study, we compared adult female flies fed an alternating diet (yoyo flies) with flies fed a constant low (CL) or high (CH) diet and tested how whole genome expression was affected by these diet regimes and how the transcriptional responses related to different life-history traits. We showed that flies were able to respond quickly to diet fluctuations throughout life span by drastically changing their transcription. Importantly, by measuring the response of multiple life-history traits we were able to decouple groups of genes associated with life span or reproduction, life-history traits that often covary with a diet change. A coexpression network analysis uncovered which genes underpin the separate and shared regulation of these life-history traits. Our study provides essential insights to help unravel the genetic architecture mediating life-history responses to diet, and it shows that the flies’ whole genome transcription response is highly plastic.
机译:表型可塑性是生活历史演化中的重要概念,以及大多数生物,包括果蝇黑素转渣,展示了饮食的塑料寿命历史反应。但是,关于这些生命历史响应如何介导的介绍毫无少。在这项研究中,我们比较了成年女性苍蝇喂养交替饮食(Yoyo苍蝇),苍蝇喂养恒定的低(Cl)或高(Ch)饮食,并测试了全基因组表达如何受到这些饮食制度的影响以及如何相关的转录反应如何相关对不同的终身历史特征。我们表明,通过大大改变转录,苍蝇能够在整个寿命中迅速响应饮食波动。重要的是,通过测量多个生命历史特征的响应,我们能够将与生命跨度或繁殖相关的基因分离,寿命的生命历史特征,这些特征经常与饮食变化进行饮食变化。共表达网络分析揭示了哪些基因支撑了这些生命历史特征的单独和共同调节。我们的研究提供了有必要的见解,帮助解开衰弱的遗传架构介导生命历史反应饮食,并且它表明苍蝇的全部基因组转录反应是高度塑料。

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