Albini Dania, Ransome Emma, Dumbrell Alex J, Pawar Samraat, O'Gorman Eoin J, Smith Thomas P, Bell Thomas, Jackson Michelle C, Woodward Guy
Department of Biology, University of Oxford, Oxford, UK.
The Georgina Mace Centre for the Living Planet, Department of Life Sciences, Imperial College London, Ascot, UK.
Commun Biol. 2025 Feb 3;8(1):162. doi: 10.1038/s42003-024-07380-2.
The threat of climate change has renewed interest in the responses of communities and ecosystems to warming, with changes in size spectra expected to signify fundamental shifts in the structure and dynamics of these multispecies systems. While substantial empirical evidence has accumulated in recent years on such changes, we still lack general insights due to a limited coverage of warming scenarios that span spatial and temporal scales of relevance to natural systems. We addressed this gap by conducting an extensive freshwater mesocosm experiment across 36 large field mesocosms exposed to intergenerational warming treatments of up to +8 °C above ambient levels. We found a nonlinear decrease in the overall mean body size of zooplankton with warming, with a 57% reduction at +8 °C. This pattern was broadly consistent over two tested seasons and major taxonomic groups. We also detected some breakpoints in the community-level size-temperature relationship, indicating that the system's response shifts noticeably above a certain level of warming. These results underscore the need to capture intergenerational responses to large gradients in warming at appropriate scales in time and space in order to better understand the effects of warming on natural communities and ecosystems.
气候变化的威胁重新唤起了人们对群落和生态系统对变暖反应的兴趣,预计大小谱的变化将表明这些多物种系统的结构和动态发生了根本性转变。尽管近年来已经积累了大量关于此类变化的实证证据,但由于对跨越与自然系统相关的时空尺度的变暖情景的覆盖有限,我们仍然缺乏全面的认识。我们通过在36个大型野外中宇宙进行广泛的淡水生态实验来填补这一空白,这些中宇宙接受了比环境水平高8摄氏度的代际变暖处理。我们发现,随着温度升高,浮游动物的总体平均体型呈非线性下降,在8摄氏度时减少了57%。这一模式在两个测试季节和主要分类群中大致一致。我们还在群落水平的大小-温度关系中检测到一些断点,表明该系统的反应在一定程度的变暖之上会明显转变。这些结果强调,有必要在适当的时空尺度上捕捉对大梯度变暖的代际反应,以便更好地理解变暖对自然群落和生态系统的影响。