Institute for Environmental Sciences, University Koblenz-Landau, Fortstraße 7, 76829, Landau in der Pfalz, Germany.
Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences, Box 7050, 75007, Uppsala, Sweden.
Sci Rep. 2018 Nov 19;8(1):17021. doi: 10.1038/s41598-018-35397-1.
Determining whether the structural and functional stress responses of communities are similar across space and time is paramount for forecasting and extrapolating the consequences of anthropogenic pressures on ecosystems and their services. Stream ecosystems are under high anthropogenic pressure; however, studies have only examined the response of stream communities across large scales over multiple generations. We studied the responses of leaf-associated microbial communities in streams within three European biogeographical regions to chemical stress in a microcosm experiment with multiple cycles of fungicide pollution and resource colonisation. Fungal community composition and the ecosystem function leaf decomposition were measured as response variables. Microbial leaf decomposition showed similar recovery times under environmental levels of fungicide exposure across regions. Initially, the decomposition declined (between 19 and 53%) under fungicide stress and recovered to control levels during the third cycle of pollution and colonisation. Although community composition and its stress response varied between regions, this suggests similar functional community adaptation towards fungicide stress over time. Genetic, epigenetic and physiological adaptations, as well as species turnover, may have contributed to community adaptation but further studies are required to determine if and to which extent these mechanisms are operating. Overall, our findings provide the first evidence of a similar functional response of microbial leaf decomposition to chemical stress across space and time.
确定社区的结构和功能应激反应在空间和时间上是否相似,对于预测和推断人为压力对生态系统及其服务的后果至关重要。溪流生态系统承受着巨大的人为压力;然而,研究仅在多个世代的大范围内检查了溪流社区的反应。我们在一个具有多个杀菌剂污染和资源定殖周期的微宇宙实验中,研究了三个欧洲生物地理区域溪流中与叶片相关的微生物群落对化学胁迫的反应。真菌群落组成和生态系统功能叶片分解被作为响应变量进行了测量。在整个地区的环境水平的杀菌剂暴露下,微生物叶片分解显示出相似的恢复时间。最初,在杀菌剂胁迫下,分解下降(19%至 53%),并在污染和定殖的第三个周期恢复到对照水平。尽管群落组成及其对胁迫的反应在不同地区之间存在差异,但这表明在时间上对杀菌剂胁迫的功能群落适应具有相似性。遗传、表观遗传和生理适应以及物种更替可能促成了群落的适应,但需要进一步的研究来确定这些机制是否以及在何种程度上起作用。总的来说,我们的研究结果首次提供了在空间和时间上微生物叶片分解对化学胁迫具有相似功能反应的证据。