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表型丧失与进化中基因调控景观的广泛分歧有关。

Phenotype loss is associated with widespread divergence of the gene regulatory landscape in evolution.

机构信息

Max Planck Institute of Molecular Cell Biology and Genetics, Dresden, 01307, Germany.

Max Planck Institute for the Physics of Complex Systems, Dresden, 01187, Germany.

出版信息

Nat Commun. 2018 Nov 9;9(1):4737. doi: 10.1038/s41467-018-07122-z.

Abstract

Detecting the genomic changes underlying phenotypic changes between species is a main goal of evolutionary biology and genomics. Evolutionary theory predicts that changes in cis-regulatory elements are important for morphological changes. We combined genome sequencing, functional genomics and genome-wide comparative analyses to investigate regulatory elements in lineages that lost morphological traits. We first show that limb loss in snakes is associated with widespread divergence of limb regulatory elements. We next show that eye degeneration in subterranean mammals is associated with widespread divergence of eye regulatory elements. In both cases, sequence divergence results in an extensive loss of transcription factor binding sites. Importantly, diverged regulatory elements are associated with genes required for normal limb patterning or normal eye development and function, suggesting that regulatory divergence contributed to the loss of these phenotypes. Together, our results show that genome-wide decay of the phenotype-specific cis-regulatory landscape is a hallmark of lost morphological traits.

摘要

检测物种间表型变化背后的基因组变化是进化生物学和基因组学的主要目标。进化理论预测,顺式调控元件的变化对于形态变化很重要。我们结合基因组测序、功能基因组学和全基因组比较分析,研究了失去形态特征的谱系中的调控元件。我们首先表明,蛇类的肢体缺失与肢体调控元件的广泛分歧有关。我们接下来表明,地下哺乳动物的眼睛退化与眼睛调控元件的广泛分歧有关。在这两种情况下,序列分歧导致转录因子结合位点的大量丢失。重要的是,分化的调控元件与正常肢体模式形成或正常眼睛发育和功能所需的基因相关,这表明调控分歧导致了这些表型的丧失。总之,我们的研究结果表明,表型特异性顺式调控景观的全基因组衰减是失去形态特征的标志。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef4b/6226452/8f7416d60403/41467_2018_7122_Fig1_HTML.jpg

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