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Recurrent Heatwaves Slow Down the Recovery of a Phytoplankton Community

机译:反复出现的热浪减缓了浮游植物群落的恢复

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摘要

Heatwaves (HWs) are predicted to increase in frequency and severity due to climate change. Yet, there is limited information about how ecological resilience of aquatic communities is going to be impacted by recurrent HWs. Here, we used data from an outdoor freshwater mesocosm experiment where a semi‐natural phytoplankton community was exposed to three subsequent HWs. The data were used to test two different hypotheses regarding community and ecosystem responses to recurrent perturbations: critical slowing down and rescue. Slowing down would determine a reduction in resilience and eventually a community or ecosystem collapse, whereas rescue would increase community or ecosystem resilience and maintain stable community and ecosystem properties. The results of our experiment showed evidence for critical slowing down, but not for community or ecosystem rescue. The recovery capacity of phytoplankton biomass and dissolved oxygen gradually decreased after the first two HWs and sharply declined after the third one. The decline in these community and ecosystem properties were linked to a significant compositional turnover in the phytoplankton community. Although we did not find evidence for a transition into an alternative stable state, our results provide insights into how the overall resilience of a phytoplankton community may decline in the presence of recurrent heatwaves. Thus, we highlight the importance of monitoring the slowing down of recovery of aquatic communities experiencing repeated exposure to severe perturbations.
机译:由于气候变化,预计热浪 (HW) 的频率和严重程度将增加。然而,关于水生生物群落的生态复原力将如何受到反复出现的 HW 的影响,信息有限。在这里,我们使用了来自户外淡水中宇宙实验的数据,在该实验中,一个半自然浮游植物群落暴露于三个后续的 HW。这些数据用于检验关于社区和生态系统对反复扰动的反应的两种不同假设:临界减速和救援。放慢速度将决定复原力的降低,并最终导致群落或生态系统崩溃,而救援将提高群落或生态系统的复原力,并维持稳定的群落和生态系统财产。我们的实验结果显示了临界减速的证据,但没有社区或生态系统救援的证据。浮游植物生物量和溶解氧的恢复能力在前两次HWs后逐渐下降,在第3次HWs后急剧下降。这些群落和生态系统特性的下降与浮游植物群落的显着组成更替有关。尽管我们没有找到过渡到另一种稳定状态的证据,但我们的结果提供了关于浮游植物群落的整体恢复力在反复热浪的情况下如何下降的见解。因此,我们强调了监测反复遭受严重扰动的水生群落恢复速度的重要性。

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