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The Relationship between Selection Network Connectivity and Regulatory Variation within a Population of Capsella grandiflora

机译:Cap菜种群中选择网络连接和调节变异之间的关系

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摘要

Interactions between genes can have important consequences for how selection shapes sequence variation at these genes. Specifically, genes that have pleiotropic effects by affecting the expression level of many other genes may be under stronger selective constraint. We used coexpression networks to measure connectivity between genes and investigated the relationship between gene connectivity and selection in a natural population of the plant Capsella grandiflora. We observed that network connectivity was negatively correlated with genetic divergence due to stronger negative selection on highly-connected genes even when controlling for variation in gene expression level. However, the presence of local regulatory variation for a gene’s expression level was also associated with reduced negative selection and lower gene connectivity. While it is difficult to disentangle the causal relationships between these factors, our results show that both connectivity and local regulatory variation are important factors for explaining variation in selection between genes.
机译:基因之间的相互作用可能会对选择如何影响这些基因的序列变异产生重要影响。具体而言,通过影响许多其他基因的表达水平而具有多效作用的基因可能处于更强的选择性约束之下。我们使用共表达网络来测量基因之间的连通性,并研究了基因的连通性与植物Cap蒲自然种群中选择之间的关系。我们观察到,即使在控制基因表达水平的变化时,由于对高度连接的基因进行更强的负选择,网络的连通性与遗传多样性呈负相关。但是,基因表达水平的局部调控变异的存在还与阴性选择减少和基因连通性降低有关。尽管很难弄清这些因素之间的因果关系,但我们的结果表明,连通性和局部调控变异都是解释基因选择差异的重要因素。

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