首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Climate-induced changes in bottom-up and top-down processes independently alter a marine ecosystem
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Climate-induced changes in bottom-up and top-down processes independently alter a marine ecosystem

机译:由气候引起的自下而上和自上而下的变化独立地改变了海洋生态系统

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摘要

Climate change has complex structural impacts on coastal ecosystems. Global warming is linked to a widespread decline in body size, whereas increased flood frequency can amplify nutrient enrichment through enhanced run-off. Altered population body-size structure represents a disruption in top-down control, whereas eutrophication embodies a change in bottom-up forcing. These processes are typically studied in isolation and little is known about their potential interactive effects. Here, we present the results of an in situ experiment examining the combined effects of topdown and bottom-up forces on the structure of a coastal marine community. Reduced average body mass of the top predator (the shore crab, Carcinus maenas) and nutrient enrichment combined additively to alter mean community body mass. Nutrient enrichment increased species richness and overall density of organisms. Reduced top-predator body mass increased community biomass. Additionally, we found evidence for an allometrically induced trophic cascade. Here, the reduction in top-predator body mass enabled greater biomass of intermediate fish predators within the mesocosms. This, in turn, suppressed key micrograzers, which led to an overall increase in microalgal biomass. This response highlights the possibility for climate-induced trophic cascades, driven by altered size structure of populations, rather than species extinction.
机译:气候变化对沿海生态系统具有复杂的结构影响。全球变暖与体重的普遍下降有关,而洪水频率的增加可以通过径流的增加来扩大养分的吸收。人口规模结构的改变代表了自上而下控制的破坏,而富营养化体现了自下而上的强迫的变化。这些过程通常是单独研究的,对其潜在的交互作用知之甚少。在这里,我们介绍了一项原位实验的结果,该实验研究了自上而下和自下而上的力量对沿海海洋群落结构的综合影响。顶级捕食者(岸蟹,Carcinus maenas)的平均体重降低和营养物质丰富相加,共同改变了平均社区体重。营养丰富增加了物种的丰富度和生物的整体密度。顶级捕食者体重的减少增加了社区生物量。此外,我们发现了异速生长诱导的营养级联的证据。在这里,顶级捕食者体重的减少使中型介体中的中间鱼类捕食者具有更大的生物量。反过来,这抑制了关键的微食草者,从而导致了微藻生物量的总体增加。这种反应凸显了由气候变化引起的营养级联的可能性,这是由种群大小结构的改变而不是物种灭绝引起的。

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