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表型停滞与遗传分化。

Phenotypic stasis with genetic divergence.

作者信息

Mallard François, Noble Luke, Guzella Thiago, Afonso Bruno, Baer Charles F, Teotónio Henrique

机构信息

Institut de Biologie de l'École Normale Supérieure, CNRS UMR 8197, Inserm U1024, PSL Research University, F-75005 Paris, France.

Department of Biology, University of Florida Genetics Institute, University of Florida, Gainsville, Florida 32611, U.S.A.

出版信息

Peer Community J. 2023;3. doi: 10.24072/pcjournal.349. Epub 2023 Dec 12.

Abstract

Whether or not genetic divergence in the short-term of tens to hundreds of generations is compatible with phenotypic stasis remains a relatively unexplored problem. We evolved predominantly outcrossing, genetically diverse populations of the nematode under a constant and homogeneous environment for 240 generations and followed individual locomotion behavior. Although founders of lab populations show highly diverse locomotion behavior, during lab evolution, the component traits of locomotion behavior - defined as the transition rates in activity and direction - did not show divergence from the ancestral population. In contrast, transition rates' genetic (co)variance structure showed a marked divergence from the ancestral state and differentiation among replicate populations during the final 100 generations and after most adaptation had been achieved. We observe that genetic differentiation is a transient pattern during the loss of genetic variance along phenotypic dimensions under drift during the last 100 generations of lab evolution. These results suggest that short-term stasis of locomotion behavior is maintained because of stabilizing selection, while the genetic structuring of component traits is contingent upon drift history.

摘要

在短短数十代到数百代的时间内,基因分化是否与表型停滞相容,仍然是一个相对未被探索的问题。我们在恒定且均匀的环境中,使线虫的主要异交、基因多样的群体进化了240代,并追踪个体的运动行为。尽管实验室群体的创始个体表现出高度多样的运动行为,但在实验室进化过程中,运动行为的组成特征——定义为活动和方向的转换率——并未显示出与祖先群体的差异。相比之下,在最后的100代以及在实现了大部分适应性之后,转换率的遗传(协)方差结构与祖先状态有明显差异,并且在重复群体之间出现了分化。我们观察到,在实验室进化的最后100代中,在漂变作用下,沿着表型维度的遗传方差丧失期间,遗传分化是一种短暂的模式。这些结果表明,运动行为的短期停滞是由于稳定选择而维持的,而组成特征的遗传结构则取决于漂变历史。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6f3/11434230/7f9ab52669d6/nihms-2024663-f0001.jpg

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