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生态系统规模引发的环境波动会影响群落组装机制的时间动态。

Ecosystem size-induced environmental fluctuations affect the temporal dynamics of community assembly mechanisms.

作者信息

Bier Raven L, Vass Máté, Székely Anna J, Langenheder Silke

机构信息

Department of Ecology and Genetics/Limnology, Uppsala University, Norbyvägen 18 D, 75236, Uppsala, Sweden.

Savannah River Ecology Laboratory, University of Georgia, PO Drawer E, Aiken, SC, 29802, USA.

出版信息

ISME J. 2022 Dec;16(12):2635-2643. doi: 10.1038/s41396-022-01286-9. Epub 2022 Aug 18.

Abstract

Understanding processes that determine community membership and abundance is important for many fields from theoretical community ecology to conservation. However, spatial community studies are often conducted only at a single timepoint despite the known influence of temporal variability on community assembly processes. Here we used a spatiotemporal study to determine how environmental fluctuation differences induced by mesocosm volumes (larger volumes were more stable) influence assembly processes of aquatic bacterial metacommunities along a press disturbance gradient. By combining path analysis and network approaches, we found mesocosm size categories had distinct relative influences of assembly process and environmental factors that determined spatiotemporal bacterial community composition, including dispersal and species sorting by conductivity. These processes depended on, but were not affected proportionately by, mesocosm size. Low fluctuation, large mesocosms primarily developed through the interplay of species sorting that became more important over time and transient priority effects as evidenced by more time-delayed associations. High fluctuation, small mesocosms had regular disruptions to species sorting and greater importance of ecological drift and dispersal limitation indicated by lower richness and higher taxa replacement. Together, these results emphasize that environmental fluctuations influence ecosystems over time and its impacts are modified by biotic properties intrinsic to ecosystem size.

摘要

理解决定群落组成和丰度的过程对于从理论群落生态学到保护等许多领域都很重要。然而,尽管已知时间变异性对群落组装过程有影响,但空间群落研究通常仅在单个时间点进行。在这里,我们进行了一项时空研究,以确定由中宇宙体积(较大体积更稳定)引起的环境波动差异如何沿着压力干扰梯度影响水生细菌元群落的组装过程。通过结合路径分析和网络方法,我们发现中宇宙大小类别对组装过程和环境因素具有不同的相对影响,这些因素决定了时空细菌群落组成,包括扩散和通过电导率进行的物种分选。这些过程取决于中宇宙大小,但不成比例地受其影响。低波动、大的中宇宙主要通过物种分选的相互作用发展而来,随着时间的推移,物种分选变得更加重要,并且存在短暂的优先效应,更多的时间延迟关联证明了这一点。高波动、小的中宇宙对物种分选有定期干扰,生态漂变和扩散限制的重要性更高,这表现为丰富度较低和分类单元替换率较高。总之,这些结果强调环境波动随时间影响生态系统,其影响会因生态系统大小固有的生物特性而改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d05f/9666552/1f596104dc32/41396_2022_1286_Fig1_HTML.jpg

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