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Temperature increase and fluctuation induce phytoplankton biodiversity loss – Evidence from a multi‐seasonal mesocosm experiment

机译:温度升高和波动引起浮游植物生物多样性的丧失–来自多季节中尺度实验的证据

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摘要

Global climate change scenarios predict lake water temperatures to increase up to 4°C and extreme weather events, including heat waves and large temperature fluctuations, to occur more frequently. Such changes may result in a reorganization of the plankton community structure, causing shifts in diversity and structure toward a community dominated by fewer species that are more adapted to endure warmer and irregular temperature conditions. We designed a long‐term (8 months) mesocosm experiment to explore how ambient water temperature (C: control), induced increased temperature (T: +4°C), and temperature fluctuations (F: ±4°C relative to T) change phytoplankton phenology, taxonomical diversity, and community structure, and how such changes affected zooplankton abundance and composition. Synthesis. Our results show that T and F relative to C significantly decreased phytoplankton diversity. Moreover, there was a clear effect of the temperature treatments (T and F) on phytoplankton size structure that resulted in a significantly lower growth of large species (i.e., large Chlorophyta) compared to C. Decreased diversity and evenness in the T and F treatments pushed the community toward the dominance of only a few phytoplankton taxa (mainly Cyanobacteria and Chlorophyta) that are better adapted to endure warmer and more irregular temperature conditions. The observed shift toward Cyanobacteria dominance may affect trophic energy transfer along the aquatic food web.
机译:全球气候变化情景预测,湖水温度将升高至4°C,极端天气事件(包括热浪和较大的温度波动)会更加频繁地发生。这种变化可能导致浮游生物群落结构的重组,导致多样性和结构向由较少物种主导的群落转变,而这些物种更适合于承受温暖和不规则的温度条件。我们设计了一个长期(8个月)的中观实验,以探索环境水温(C:对照),诱导的温度升高(T:+ 4°C)和温度波动(F:相对于T为±4°C)改变浮游植物的物候,分类学多样性和群落结构,以及这些变化如何影响浮游动物的丰度和组成。合成。我们的结果表明,相对于C,T和F显着降低了浮游植物的多样性。此外,温度处理(T和F)对浮游植物大小结构有明显影响,这导致大型物种(即大型绿藻)的生长明显低于C。T和F处理降低了多样性和均匀性将社区推向仅占少数的浮游植物类群(主要是蓝细菌和绿藻类)的优势,它们更能适应温暖和更不规则的温度条件。观察到的向蓝细菌优势的转变可能影响沿水食物网的营养能量传递。

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