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Epigenetic and Genetic Contributions to Adaptation in Chlamydomonas

机译:衣藻适应的表观遗传和遗传贡献

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摘要

Epigenetic modifications, such as DNA methylation or histone modifications, can be transmitted between cellular or organismal generations. However, there are no experiments measuring their role in adaptation, so here we use experimental evolution to investigate how epigenetic variation can contribute to adaptation. We manipulated DNA methylation and histone acetylation in the unicellular green alga Chlamydomonas reinhardtii both genetically and chemically to change the amount of epigenetic variation generated or transmitted in adapting populations in three different environments (salt stress, phosphate starvation, and high CO2) for two hundred asexual generations. We find that reducing the amount of epigenetic variation available to populations can reduce adaptation in environments where it otherwise happens. From genomic and epigenomic sequences from a subset of the populations, we see changes in methylation patterns between the evolved populations over-represented in some functional categories of genes, which is consistent with some of these differences being adaptive. Based on whole genome sequencing of evolved clones, the majority of DNA methylation changes do not appear to be linked to cis-acting genetic mutations. Our results show that transgenerational epigenetic effects play a role in adaptive evolution, and suggest that the relationship between changes in methylation patterns and differences in evolutionary outcomes, at least for quantitative traits such as cell division rates, is complex.
机译:表观遗传修饰,如DNA甲基化或组蛋白修饰,可以在细胞或生物体世代之间传播。然而,没有实验来测量它们在适应中的作用,所以在这里我们使用实验进化来研究表观遗传变异如何促进适应。我们在遗传和化学上操纵了单细胞绿藻莱茵衣藻的 DNA 甲基化和组蛋白乙酰化,以改变在三种不同环境(盐胁迫、磷酸盐饥饿和高 CO2)中适应种群中产生或传递的表观遗传变异量两百代无性世代。我们发现,减少种群可用的表观遗传变异的数量会减少在其他情况下发生的环境中的适应。从来自种群子集的基因组和表观基因组序列中,我们看到进化种群之间甲基化模式的变化在某些功能类别的基因中过度代表,这与其中一些差异是适应性的一致。基于进化克隆的全基因组测序,大多数DNA甲基化变化似乎与顺式作用基因突变无关。我们的研究结果表明,跨代表观遗传效应在适应性进化中起作用,并表明甲基化模式的变化与进化结果差异之间的关系是复杂的,至少对于细胞分裂率等数量性状而言是这样。

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