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Does eutrophication-driven evolution change aquatic ecosystems?

机译:富营养化驱动的进化会改变水生生态系统吗?

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摘要

Eutrophication increases primary production and changes the relative abundance, taxonomic composition and spatial distribution of primary producers within an aquatic ecosystem. The changes in composition and location of resources alter the distribution and flow of energy and biomass throughout the food web. Changes in productivity also alter the physico-chemical environment, which has further effects on the biota. Such ecological changes influence the direction and strength of natural and sexual selection experienced by populations. Besides altering selection, they can also erode the habitat gradients and/or behavioural mechanisms that maintain ecological separation and reproductive isolation among species. Consequently, eutrophication of lakes commonly results in reduced ecological specialization as well as genetic and phenotypic homogenization among lakes and among niches within lakes. We argue that the associated loss in functional diversity and niche differentiation may lead to decreased carrying capacity and lower resource-use efficiency by consumers. We show that in central European whitefish species radiations, the functional diversity affected by eutrophication-induced speciation reversal correlates with community-wide trophic transfer efficiency (fisheries yield per unit phosphorus). We take this as an example of how evolutionary dynamics driven by anthropogenic environmental change can have lasting effects on biodiversity and ecosystem functioning.This article is part of the themed issue ‘Human influences on evolution, and the ecological and societal consequences'.
机译:富营养化增加了初级生产力,并改变了水生生态系统内初级生产者的相对丰度,生物分类组成和空间分布。资源组成和位置的变化改变了整个食物网中能量和生物质的分布和流动。生产力的变化也改变了物理化学环境,对生物群有进一步的影响。这种生态变化影响着人口自然选择和性选择的方向和强度。除了改变选择之外,它们还可以侵蚀栖息地梯度和/或维持物种间生态隔离和生殖隔离的行为机制。因此,湖泊的富营养化通常会导致生态专业化程度降低,以及湖泊之间以及湖泊内生态位之间的遗传和表型同质化。我们认为,功能多样性和生态位分化的相关损失可能导致消费者的承载能力下降和资源利用效率降低。我们表明,在中欧白鲑物种辐射中,富营养化引起的物种形成逆转影响的功能多样性与社区范围的营养转移效率(每单位磷的渔业产量)相关。我们以此为例,说明人为环境变化驱动的进化动力学如何对生物多样性和生态系统功能产生持久影响。本文是“人类对进化的影响以及生态和社会后果”主题问题的一部分。

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