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在一个中观实验中,溪流微型底栖生物群落的功能和组成对多种胁迫的响应增加并释放。

Functional and compositional responses of stream microphytobenthic communities to multiple stressors increase and release in a mesocosm experiment.

机构信息

Phycology, Faculty of Biology, University of Duisburg-Essen, Essen, Germany.

Phycology, Faculty of Biology, University of Duisburg-Essen, Essen, Germany.

出版信息

Sci Total Environ. 2024 Sep 15;943:173670. doi: 10.1016/j.scitotenv.2024.173670. Epub 2024 Jun 4.

Abstract

Field observations form the basis of the majority of studies on microphytobenthic algal communities in freshwater ecosystems. Controlled mesocosm experiments data are comparatively uncommon. The few experimental mesocosm studies that have been conducted provide valuable insights into how multiple stressors affect the community structures and photosynthesis-related traits of benthic microalgae. The recovery process after the stressors have subsided, however, has received less attention in mesocosm studies. To close this gap, here we present the results of a riparian mesocosm experiment designed to investigate the effects of reduced flow velocity, increased salinity and increased temperature on microphytobenthic communities. We used a full factorial design with a semi-randomised distribution of treatments consisting of two levels of each stressor (2 × 2 × 2 treatments), with eight replicates making a total of 64 circular mesocosms, allowing a nuanced examination of their individual and combined influences. We aimed to elucidate the responses of microalgae communities seeded from stream water to the applied environmental stressors. Our results showed significant effects of reduced flow velocity and increased temperature on microphytobenthic communities. Recovery after stressor treatment led to a convergence in community composition, with priority effects (hypothesized to reflect competition for substrate between resident and newly arriving immigrant taxa) slowing down community shifts and biomass increase. Our study contributes to the growing body of literature on the ecological dynamics of microphytobenthos and emphasises the importance of rigorous experiments to validate hypotheses. These results encourage further investigation into the nuanced interactions between microphytobenthos and their environment and shed light on the complexity of ecological responses in benthic systems.

摘要

野外观察构成了大多数淡水生态系统中小微藻群落研究的基础。相比之下,受控中观实验数据则相对较少。少数已开展的实验性中观研究为了解多种胁迫因素如何影响底栖微藻的群落结构和光合作用相关特征提供了有价值的见解。然而,在中观研究中,胁迫消退后的恢复过程受到的关注较少。为了弥补这一空白,我们在这里展示了一项河岸中观实验的结果,该实验旨在研究流速降低、盐度增加和温度升高对底栖微型藻类群落的影响。我们采用了完全因子设计,并采用半随机分布处理,包括每个胁迫因素的两个水平(2×2×2 处理),共有 8 个重复,总共 64 个圆形中观实验,从而可以细致地考察它们各自和综合的影响。我们旨在阐明从溪流水中接种的藻类群落对施加的环境胁迫的响应。我们的结果表明,流速降低和温度升高对底栖微型藻类群落有显著影响。胁迫处理后的恢复导致群落组成趋同,优先效应(假设反映了驻留和新到达的移民分类群之间对基质的竞争)减缓了群落变化和生物量增加。我们的研究为底栖微型藻类的生态动态的不断增长的文献做出了贡献,并强调了严格实验对于验证假设的重要性。这些结果鼓励进一步研究底栖微型藻类与其环境之间的细微相互作用,并揭示了底栖系统中生态响应的复杂性。

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