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环境诱导的表型变化的生态后果。

The ecological consequences of environmentally induced phenotypic changes.

作者信息

Gibert Jean P, Allen Rachel L, Hruska Ron J, DeLong John P

机构信息

School of Biological Sciences, University of Nebraska-Lincoln, Lincoln, Nebraska, 68588, USA.

出版信息

Ecol Lett. 2017 Aug;20(8):997-1003. doi: 10.1111/ele.12797. Epub 2017 Jun 27.

Abstract

Population dynamics and species persistence are often mediated by species traits. Yet many important traits, like body size, can be set by resource availability and predation risk. Environmentally induced changes in resource levels or predation risk may thus have downstream ecological consequences. Here, we assess whether quantity and type of resources affect the phenotype, the population dynamics, and the susceptibility to predation of a mixotrophic protist through experiments and a model. We show that cell shape, but not size, changes with resource levels and type, and is linked to carrying capacity, thus affecting population dynamics. Also, these changes lead to differential susceptibility to predation, with direct consequences for predator-prey dynamics. We describe important links between environmental changes, traits, population dynamics and ecological interactions, that underscore the need to further understand how trait-mediated interactions may respond to environmental shifts in resource levels in an increasingly changing world.

摘要

种群动态和物种持久性通常由物种特征介导。然而,许多重要特征,如体型大小,可能由资源可用性和捕食风险决定。因此,资源水平或捕食风险的环境诱导变化可能会产生下游生态后果。在这里,我们通过实验和模型评估资源的数量和类型是否会影响混合营养型原生生物的表型、种群动态以及被捕食的易感性。我们表明,细胞形状而非大小会随资源水平和类型而变化,并且与承载能力相关联,从而影响种群动态。此外,这些变化导致对捕食的易感性存在差异,对捕食者 - 猎物动态产生直接影响。我们描述了环境变化、特征、种群动态和生态相互作用之间的重要联系,这凸显了在日益变化的世界中进一步理解特征介导的相互作用如何响应资源水平的环境变化的必要性。

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