Stem cell transcriptional profiles from mouse subspecies reveal cis -regulatory evolution at translation genes.

Noah M Simon, Yujin Kim, Diana M Bautista, James R Dutton, Rachel B Brem
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Abstract

A key goal of evolutionary genomics is to harness molecular data to draw inferences about selective forces that have acted on genomes. The field progresses in large part through the development of advanced molecular-evolution analysis methods. Here we explored the intersection between classical sequence-based tests for selection and an empirical expression-based approach, using stem cells from Mus musculus subspecies as a model. Using a test of directional, cis -regulatory evolution across genes in pathways, we discovered a unique program of induction of translation genes in stem cells of the Southeast Asian mouse M. m. castaneus relative to its sister taxa. We then mined population-genomic sequences to pursue underlying regulatory mechanisms for this expression divergence, finding robust evidence for alleles unique to M. m. castaneus at the upstream regions of the translation genes. We interpret our data under a model of changes in lineage-specific pressures across Mus musculus in stem cells with high translational capacity. Our findings underscore the rigor of integrating expression and sequence-based methods to generate hypotheses about evolutionary events from long ago.

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来自小鼠亚种的干细胞转录谱揭示了核糖体大亚基基因的顺式调控进化。
进化基因组学的一个关键目标是利用分子数据来推断作用在基因组上的选择性力。该领域的进展很大程度上是通过开发和基准测试先进的分子进化分析方法。在这里,我们以Mus musculus亚种的干细胞为模型,评估了跨通路基因定向顺式调节进化测试的严格性和性能。我们发现了一种独特的程序,在东南亚小鼠卡斯塔纽斯乳杆菌的干细胞中诱导核糖体大亚基基因,这在一定程度上是由顺式调控变异驱动的。作为一种补充,我们使用序列分析在核糖体基因队列的上游区域发现了M.M.castaneus的群体和比较基因组选择特征。在干细胞衍生的神经元中重现了这些基因座在灰松中的独特高表达程序。我们在具有高翻译能力的干细胞中,在整个肌肉谱系特异性压力变化的模型下解释我们的数据。总之,我们的发现强调了整合表达和基于序列的方法来产生关于很久以前进化事件的假设的严谨性。
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