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General-Purpose Genotype or How Epigenetics Extend the Flexibility of a Genotype

机译:通用基因型或表观遗传学如何扩展基因型的灵活性

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This project aims at investigating the link between individual epigenetic variability (not related to genetic variability) and the variation of natural environmental conditions. We studied DNA methylation polymorphisms of individuals belonging to a single genetic lineage of the clonal diploid fishChrosomus eos-neogaeussampled in seven geographically distant lakes. In spite of a low number of informative fragments obtained from an MSAP analysis, individuals of a given lake are epigenetically similar, and methylation profiles allow the clustering of individuals in two distinct groups of populations among lakes. More importantly, we observed a significant pH variation that is consistent with the two epigenetic groups. It thus seems that the genotype studied has the potential to respond differentially via epigenetic modifications under variable environmental conditions, making epigenetic processes a relevant molecular mechanism contributing to phenotypic plasticity over variable environments in accordance with the GPG model.
机译:该项目旨在研究个体表观遗传变异性(与遗传变异性无关)与自然环境条件变异之间的联系。我们研究了在七个地理上相距遥远的湖泊中取样的克隆二倍体鱼类Chrosomus eos-neogaeus的单个遗传谱系的个体的DNA甲基化多态性。尽管从MSAP分析中获得的信息量很少,但给定湖泊的个体在表观遗传上相似,并且甲基化配置文件可将湖泊中两个不同种群的个体聚集在一起。更重要的是,我们观察到与两个表观遗传基团一致的显着pH值变化。因此,似乎所研究的基因型具有在可变环境条件下通过表观遗传修饰产生差异反应的潜力,从而使表观遗传过程成为有助于根据GPG模型在可变环境下进行表型可塑性的相关分子机制。

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