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Facing environmental predictability with different sources of epigenetic variation

机译:面对不同表观遗传变异来源的环境可预测性

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Abstract Different sources of epigenetic changes can increase the range of phenotypic options. Environmentally induced epigenetic changes and stochastic epimutations are, respectively, associated with phenotypic plasticity and diversifying bet-hedging. Their relative contribution is thus expected to reflect the capacity of a genotype to face distinct changes since these strategies are differentially selected according to environmental uncertainty. To test this hypothesis, we assessed the sources of epigenetic changes on clonal fish from predictable (lakes) or unpredictable (intermittent streams) environments. DNA methylation of clones from natural conditions revealed contrasting contribution of environmentally induced versus stochastic changes according to their origins. These differences were validated in common garden experiments. Consistent with theoretical models, distinct sources of epigenetic variation prevail according to the environmental uncertainty. However, both sources act conjointly, suggesting that plasticity and random processes are complementary strategies. This represents a rigorous approach for further exploring the capacity of organisms to respond to environmental conditions.
机译:摘要表观遗传变化的不同来源可以增加表型选择的范围。环境引起的表观遗传变化和随机表观突变分别与表型可塑性和多样化的对冲交易有关。因此,由于这些策略是根据环境不确定性来选择的,因此它们的相对贡献有望反映基因型面对不同变化的能力。为了检验该假设,我们评估了可预测(湖泊)或不可预测(间歇溪流)环境中克隆鱼表观遗传变化的来源。自然条件下克隆的DNA甲基化揭示了根据环境变化而来的环境诱导与随机变化之间的差异。这些差异已在常见的花园实验中得到验证。与理论模型一致,根据环境不确定性,表观遗传变异的不同来源占优势。但是,这两个来源共同作用,表明可塑性和随机过程是互补的策略。这代表了一种严格的方法,可用于进一步探索生物对环境条件做出反应的能力。

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