Fischer Eva K, Song Youngseok, Hughes Kimberly A, Zhou Wen, Hoke Kim L
Department of Evolution, Ecology, and Behavior, University of Illinois, Urbana, IL, USA.
Department of Biology, Colorado State University, Fort Collins, CO, USA.
Mol Ecol. 2021 Mar;30(6):1516-1530. doi: 10.1111/mec.15823. Epub 2021 Mar 2.
How underlying mechanisms bias evolution toward predictable outcomes remains an area of active debate. In this study, we leveraged phenotypic plasticity and parallel adaptation across independent lineages of Trinidadian guppies (Poecilia reticulata) to assess the predictability of gene expression evolution during parallel adaptation. Trinidadian guppies have repeatedly and independently adapted to high- and low-predation environments in the wild. We combined this natural experiment with a laboratory breeding design to attribute transcriptional variation to the genetic influences of population of origin and developmental plasticity in response to rearing with or without predators. We observed substantial gene expression plasticity, as well as the evolution of expression plasticity itself, across populations. Genes exhibiting expression plasticity within populations were more likely to also differ in expression between populations, with the direction of population differences more likely to be opposite those of plasticity. While we found more overlap than expected by chance in genes differentially expressed between high- and low-predation populations from distinct evolutionary lineages, the majority of differentially expressed genes were not shared between lineages. Our data suggest alternative transcriptional configurations associated with shared phenotypes, highlighting a role for transcriptional flexibility in the parallel phenotypic evolution of a species known for rapid adaptation.
潜在机制如何使进化偏向可预测的结果仍是一个活跃的辩论领域。在本研究中,我们利用特立尼达孔雀鱼(孔雀鱼)独立谱系中的表型可塑性和平行适应性来评估平行适应过程中基因表达进化的可预测性。特立尼达孔雀鱼在野外反复且独立地适应了高捕食和低捕食环境。我们将这个自然实验与实验室育种设计相结合,以将转录变异归因于起源种群的遗传影响以及在有或没有捕食者的情况下饲养时的发育可塑性。我们观察到不同种群间存在大量的基因表达可塑性以及表达可塑性本身的进化。在种群内表现出表达可塑性的基因在种群间更有可能也存在表达差异,种群差异的方向更有可能与可塑性的方向相反。虽然我们发现来自不同进化谱系的高捕食和低捕食种群之间差异表达的基因比随机预期的有更多重叠,但大多数差异表达基因在谱系间并不共享。我们的数据表明与共享表型相关的替代转录构型,突出了转录灵活性在以快速适应著称的物种的平行表型进化中的作用。