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气候剧变期间静态和进化异速生长的分解

The Breakdown of Static and Evolutionary Allometries during Climatic Upheaval.

作者信息

Brombacher Anieke, Wilson Paul A, Bailey Ian, Ezard Thomas H G

出版信息

Am Nat. 2017 Sep;190(3):350-362. doi: 10.1086/692570. Epub 2017 Jun 9.

Abstract

The influence of within-species variation and covariation on evolutionary patterns is well established for generational and macroevolutionary processes, most prominently through genetic lines of least resistance. However, it is not known whether intraspecific phenotypic variation also directs microevolutionary trajectories into the long term when a species is subject to varying environmental conditions. Here we present a continuous, high-resolution bivariate record of size and shape changes among 12,633 individual planktonic foraminifera of a surviving and an extinct-going species over 500,000 years. Our study interval spans the late Pliocene to earliest Pleistocene intensification of northern hemisphere glaciation, an interval of profound climate upheaval that can be divided into three phases of increasing glacial intensity. Within each of these three Plio-Pleistocene climate phases, the within-population allometries predict evolutionary change from one time step to the next and that the within-phase among-population (i.e., evolutionary) allometries match their corresponding static (within-population) allometries. However, the evolutionary allometry across the three climate phases deviates significantly from the static and phase-specific evolutionary allometries in the extinct-going species. Although intraspecific variation leaves a clear signature on mean evolutionary change from one time step to the next, our study suggests that the link between intraspecific variation and longer-term micro- and macroevolutionary phenomena is prone to environmental perturbation that can overcome constraints induced by within-species trait covariation.

摘要

物种内变异和协变对进化模式的影响在代际和宏观进化过程中已得到充分证实,最显著的是通过遗传阻力最小的路线。然而,当一个物种面临不同的环境条件时,种内表型变异是否也能长期引导微观进化轨迹,目前尚不清楚。在此,我们展示了一个连续的、高分辨率的双变量记录,涵盖了一个现存物种和一个灭绝物种的12633个浮游有孔虫个体在50万年中的大小和形状变化。我们的研究区间跨越上新世晚期至更新世早期北半球冰川作用的强化期,这是一个气候剧烈动荡的时期,可分为冰川强度不断增加的三个阶段。在这三个上新世 - 更新世气候阶段的每一个阶段内,种群内异速生长关系预测了从一个时间步长到下一个时间步长的进化变化,并且阶段内种群间(即进化)异速生长关系与它们相应的静态(种群内)异速生长关系相匹配。然而,在灭绝物种中,跨越三个气候阶段的进化异速生长关系与静态和特定阶段的进化异速生长关系存在显著偏差。尽管种内变异在从一个时间步长到下一个时间步长的平均进化变化上留下了清晰的印记,但我们的研究表明,种内变异与长期微观和宏观进化现象之间的联系容易受到环境扰动的影响,这种扰动可以克服物种内性状协变所产生的限制。

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