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Cis-regulator runaway and divergence in asexuals

机译:CIS-稳压器失控和症状的差异

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With the advent of new sequencing technologies, the evolution of gene expression is becoming a subject of intensive genomic research, with sparking debates upon the role played by these kinds of changes in adaptive evolution and speciation. In this article, we model expression evolution in species differing by their reproductive systems. We consider different rates of sexual versus asexual reproduction and the different type of parthenogenesis (apomixis and the various modes of automixis). We show that competition for expression leads to two selective processes on cis-regulatory regions that act independently to organismlevel adaptation. Coevolution within regulatory networks allows these processes to occur without strongly modifying expression levels. First, cis-regulatory regions such as enhancers evolve in a runaway fashion because they automatically become associated to chromosomes purged from deleterious mutations ("Enhancer Runaway process"). Second, in clonal or nearly clonal species, homologous cis-regulatory regions tend to diverge, which leads to haploidization of expression, when they are sufficiently isolated from one another ("Enhancer Divergence process"). We show how these two processes cooccur and vary depending on the level of outcrossing, gene conversion, mitotic recombination, or recombination in automictic species. This study offers thus a baseline to understand patterns of expression evolution across the diversity of eukaryotic species.
机译:随着新的测序技术的出现,基因表达的演变正在成为一个密集型基因组研究的主题,引发了对自适应演化和形态的这种变化作用的作用。在本文中,我们模拟了他们的生殖系统不同的物种的表达演变。我们考虑不同的性性能与无性繁殖和不同类型的单性发生(apomixis和各种自动杂志)。我们表明,表达竞争导致了与CIS-SCOMENTOATION区域的两个选择性流程,其独立于组织体适应。监管网络中的参数允许这些过程发生而不会强烈修改表达水平。首先,诸如增强剂的顺式调节区域以失控的方式发展,因为它们自动与从有害突变中吹扫的染色体相关(“增强子失控过程”)。其次,在克隆或近克隆物种中,同源顺式调节区域倾向于发散,这导致表达的均值,当它们被彼此充分分离时(“增强子分歧过程”)。我们展示这两种过程如何协调并根据自动化物种中的延伸,基因转化,有丝分子重组或重组水平而变化。因此,本研究提供了一种基线,了解对真核生物的多样性的表达演变模式。

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