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首页> 外文期刊>Ecology: A Publication of the Ecological Society of America >Community stoichiometry in a changing world: combined effects of warming and eutrophication on phytoplankton dynamics
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Community stoichiometry in a changing world: combined effects of warming and eutrophication on phytoplankton dynamics

机译:不断变化的世界中的社区化学计量:变暖和富营养化对浮游植物动力学的综合影响

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摘要

The current changes in our climate will likely have far-reaching consequences for aquatic ecosystems. These changes in the climate, however, do not act alone, and are often accompanied by additional stressors such as eutrophication. Both global warming and eutrophication have been shown to affect the timing and magnitude of phytoplankton blooms. Little is known about the combined effects of rising temperatures and eutrophication on the stoichiometry of entire phytoplankton communities. We exposed a natural phytoplankton spring community to different warming and phosphorus-loading scenarios using a fullfactorial design. Our results demonstrate that rising temperatures promote the growth rate of an entire phytoplankton community. Furthermore, both rising temperatures and phosphorus loading stimulated the maximum biomass built up by the phytoplankton community. Rising temperatures led to higher carbon : nutrient stoichiometry of the phytoplankton community under phosphorus-limited conditions. Such a shift towards higher carbon : nutrient ratios, in combination with a higher biomass buildup, suggests a temperature-driven increase in nutrient use efficiency, the phytoplankton community. Importantly, with higher carbon : nutrient stoichiometry, phytoplankton is generally of poorer nutritional value for zooplankton. Thus, although warming may result in higher phytoplankton biomass, this may be accompanied by a stoichiometric mismatch between phytoplankton and their grazers, with possible consequences for the entire aquatic food web.
机译:当前我们气候的变化可能会对水生生态系统产生深远的影响。但是,这些气候变化并非单独起作用,并且常常伴随着其他压力源,例如富营养化。研究表明,全球变暖和富营养化都会影响浮游植物开花的时间和强度。对于升高的温度和富营养化对整个浮游植物群落化学计量的综合影响知之甚少。我们使用全因子设计使天然浮游植物的春季群落暴露于不同的增温和磷负荷情景。我们的结果表明,温度升高促进了整个浮游植物群落的生长速度。此外,温度升高和磷负荷都刺激了浮游植物群落积累的最大生物量。温度升高导致磷受限条件下浮游植物群落的碳:养分化学计量较高。向高碳:养分比的这种转变,再加上更高的生物量积累,表明温度驱动的浮游植物群落养分利用效率的提高。重要的是,随着碳:养分化学计量的增加,浮游植物对浮游动物的营养价值通常较差。因此,尽管变暖可能导致浮游植物的生物量更高,但这可能伴随着浮游植物与其放牧者之间的化学计量失配,可能对整个水生食物网产生影响。

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