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胰岛素信号转导转录因子 foxo 的渐变多态性有助于果蝇的生活史适应。

A clinal polymorphism in the insulin signaling transcription factor foxo contributes to life-history adaptation in Drosophila.

机构信息

Department of Ecology and Evolution, University of Lausanne, Lausanne, Switzerland.

Department of Biology, University of Fribourg, Fribourg, Switzerland.

出版信息

Evolution. 2019 Sep;73(9):1774-1792. doi: 10.1111/evo.13759. Epub 2019 May 29.

Abstract

A fundamental aim of adaptation genomics is to identify polymorphisms that underpin variation in fitness traits. In Drosophila melanogaster, latitudinal life-history clines exist on multiple continents and make an excellent system for dissecting the genetics of adaptation. We have previously identified numerous clinal single-nucleotide polymorphism in insulin/insulin-like growth factor signaling (IIS), a pathway known from mutant studies to affect life history. However, the effects of natural variants in this pathway remain poorly understood. Here we investigate how two clinal alternative alleles at foxo, a transcriptional effector of IIS, affect fitness components (viability, size, starvation resistance, fat content). We assessed this polymorphism from the North American cline by reconstituting outbred populations, fixed for either the low- or high-latitude allele, from inbred DGRP lines. Because diet and temperature modulate IIS, we phenotyped alleles across two temperatures (18°C, 25°C) and two diets differing in sugar source and content. Consistent with clinal expectations, the high-latitude allele conferred larger body size and reduced wing loading. Alleles also differed in starvation resistance and expression of insulin-like receptor, a transcriptional target of FOXO. Allelic reaction norms were mostly parallel, with few GxE interactions. Together, our results suggest that variation in IIS makes a major contribution to clinal life-history adaptation.

摘要

适应基因组学的一个基本目标是确定那些支撑适应性特征变异的多态性。在黑腹果蝇中,多个大陆存在纬度生活史梯度,这使其成为解析适应性遗传基础的绝佳系统。我们之前已经在胰岛素/胰岛素样生长因子信号(IIS)途径中鉴定出许多梯度单核苷酸多态性,突变研究表明该途径会影响生活史。然而,该途径中自然变异的影响仍知之甚少。在这里,我们研究了 IIS 的转录效应因子 foxo 的两个梯度替代等位基因如何影响适应度成分(活力、大小、抗饥饿能力、脂肪含量)。我们通过从近交系 DGRP 系中重组出具有低或高纬度等位基因的杂交群体,从北美梯度中评估了这种多态性。由于饮食和温度调节 IIS,我们在两个温度(18°C、25°C)和两种不同糖源和含量的饮食条件下对等位基因进行表型分析。与梯度预期一致,高纬度等位基因赋予了更大的体型和更小的翅膀负荷。等位基因在抗饥饿能力和胰岛素样受体(FOXO 的一个转录靶标)的表达上也存在差异。等位基因的反应规范大多是平行的,很少有 GxE 相互作用。总之,我们的结果表明,IIS 的变异对梯度生活史适应做出了重大贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/711b/6771989/d72a434d7ead/EVO-73-1774-g001.jpg

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