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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Experimental evolution across different thermal regimes yields genetic divergence in recombination fraction but no divergence in temperature associated plastic recombination
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Experimental evolution across different thermal regimes yields genetic divergence in recombination fraction but no divergence in temperature associated plastic recombination

机译:不同热量制度的实验演化产生重组分数的遗传分歧,但在温度相关塑料重组中没有发散

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摘要

Phenotypic plasticity is pervasive in nature. One mechanism underlying the evolution and maintenance of such plasticity is environmental heterogeneity. Indeed, theory indicates that both spatial and temporal variation in the environment should favor the evolution of phenotypic plasticity under a variety of conditions. Cyclical environmental conditions have also been shown to yield evolved increases in recombination frequency. Here, we use a panel of replicated experimental evolution populations of D. melanogaster to test whether variable environments favor enhanced plasticity in recombination rate and/or increased recombination rate in response to temperature. In contrast to expectation, we find no evidence for either enhanced plasticity in recombination or increased rates of recombination in the variable environment lines. Our data confirm a role of temperature in mediating recombination fraction in D. melanogaster, and indicate that recombination is genetically and plastically depressed under lower temperatures. Our data further suggest that the genetic architectures underlying plastic recombination and population-level variation in recombination rate are likely to be distinct.
机译:表型可塑性本质上是普遍存在的。依赖于进化和维持这种可塑性的一种机制是环境异质性。实际上,理论表明,环境中的空间和时间变化都应有利于在各种条件下表型可塑性的演变。还显示出环状环境条件以产生重组频率的进化增加。在这里,我们使用D. Melanogaster的复制实验演化群体的小组来测试可变环境是否有利于增强复合率和/或响应于温度的重组率增加的可塑性。与期望相比,我们发现没有证据表明可变环境线中的重组或重组率提高的迹象。我们的数据证实了温度在D. melanogaster中介导重组级分的作用,并表明重组在较低温度下遗传和塑性抑制。我们的数据进一步表明,塑性重组和重组率的群体级别变化的基因架构可能是不同的。

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