Hoffmann Julius, Hogle Shane, Hiltunen Teppo, Becks Lutz
Aquatic Ecology and Evolution, University of Konstanz, Konstanz, Germany.
Department of Biology, University of Turku, Turku, Finland.
Ecol Lett. 2025 Jan;28(1):e70033. doi: 10.1111/ele.70033.
Evolutionary change within community members and shifts in species composition via species sorting contribute to community and trait dynamics. However, we do not understand when and how both processes contribute to community dynamics. Here, we estimated the contributions of species sorting and evolution over time (60 days) in bacterial communities of 24 species under selection by a ciliate predator. We found that species sorting contributed to increased community carrying capacity, while evolution contributed to decreased anti-predator defences. The relative roles of both processes changed over time, and our analysis indicates that if initial trait variation was in the direction of selection, species sorting prevailed, otherwise evolution drove phenotypic change. Furthermore, community composition, population densities and genomic evolution were affected by phenotypic match-mismatch combinations of predator and prey evolutionary history. Overall, our findings help to integrate when and how ecological and evolutionary processes structure communities.
群落成员内部的进化变化以及通过物种分选导致的物种组成变化,共同推动了群落和性状动态变化。然而,我们并不清楚这两个过程何时以及如何对群落动态产生影响。在此,我们估算了在纤毛虫捕食者选择作用下,24个物种的细菌群落中,物种分选和进化在60天时间内的贡献。我们发现,物种分选有助于提高群落承载能力,而进化则导致抗捕食防御能力下降。这两个过程的相对作用随时间发生变化,我们的分析表明,如果初始性状变异朝着选择方向,物种分选占主导,否则进化驱动表型变化。此外,群落组成、种群密度和基因组进化受捕食者与猎物进化历史的表型匹配 - 不匹配组合影响。总体而言,我们的研究结果有助于整合生态和进化过程构建群落的时间和方式。