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波动选择在野外生态群落中维持独特的物种表型。

Fluctuating selection maintains distinct species phenotypes in an ecological community in the wild.

机构信息

School of Biological Sciences, Georgia Institute of Technology, Atlanta, GA 30332.

Department of Biology, Washington University in St. Louis, St. Louis, MO 63130.

出版信息

Proc Natl Acad Sci U S A. 2023 Oct 17;120(42):e2222071120. doi: 10.1073/pnas.2222071120. Epub 2023 Oct 9.

Abstract

Species' phenotypic characteristics often remain unchanged over long stretches of geological time. Stabilizing selection-in which fitness is highest for intermediate phenotypes and lowest for the extremes-has been widely invoked as responsible for this pattern. At the community level, such stabilizing selection acting individually on co-occurring species is expected to produce a rugged fitness landscape on which different species occupy distinct fitness peaks. However, even with an explosion of microevolutionary field studies over the past four decades, evidence for persistent stabilizing selection driving long-term stasis is lacking. Nonetheless, biologists continue to invoke stabilizing selection as a major factor explaining macroevolutionary patterns. Here, by directly measuring natural selection in the wild, we identified a complex community-wide fitness surface in which four lizard species each occupy a distinct fitness peak close to their mean phenotype. The presence of local fitness optima within species, and fitness valleys between species, presents a barrier to adaptive evolutionary change and acts to maintain species differences through time. However, instead of continuously operating stabilizing selection, we found that species were maintained on these peaks by the combination of many independent periods among which selection fluctuated in form, strength, direction, or existence and in which stabilizing selection rarely occurred. Our results suggest that lack of substantial phenotypic evolutionary change through time may be the result of selection, but not persistent stabilizing selection as classically envisioned.

摘要

物种的表型特征在很长的地质时间内往往保持不变。稳定选择——其中中间表型的适合度最高,极端表型的适合度最低——被广泛认为是造成这种模式的原因。在群落水平上,对共同出现的物种个体进行的这种稳定选择,预计会产生一个崎岖的适合度景观,不同的物种占据不同的适合度高峰。然而,尽管在过去四十年中,微观进化的野外研究呈爆炸式增长,但缺乏持久的稳定选择驱动长期稳定的证据。尽管如此,生物学家仍然将稳定选择作为解释宏观进化模式的主要因素之一。在这里,我们通过直接在野外测量自然选择,确定了一个复杂的、全社区范围的适合度表面,其中四个蜥蜴物种各自占据了一个接近其平均表型的独特适合度高峰。物种内存在局部适合度最优值,物种之间存在适合度低谷,这对适应性进化变化构成了障碍,并通过时间来维持物种差异。然而,我们发现,物种并不是通过持续的稳定选择来维持这些高峰,而是通过许多独立的时期组合来维持,在这些时期中,选择在形式、强度、方向或存在方面发生波动,而稳定选择很少发生。我们的结果表明,随着时间的推移,缺乏实质性的表型进化变化可能是选择的结果,但不是经典意义上的持续稳定选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4f7/10589706/a244eaec087d/pnas.2222071120fig01.jpg

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