Laboratory of Aquatic Ecology, Evolution & Conservation, KU Leuven, Charles Deberiotstraat 32, 3000, Leuven, Belgium.
Leibniz Institut für Gewässerökologie und Binnenfischerei (IGB), Müggelseedamm 310, 12587, Berlin, Germany.
Microb Ecol. 2023 Feb;85(2):400-410. doi: 10.1007/s00248-022-01994-x. Epub 2022 Mar 19.
Biotic interactions are suggested to be key factors structuring bacterioplankton community assembly but are rarely included in metacommunity studies. Eutrophication of ponds and lakes provides a useful opportunity to evaluate how bacterioplankton assembly is affected by specific environmental conditions, especially also by biotic interactions with other trophic levels such as phytoplankton and zooplankton. Here, we evaluated the importance of deterministic and stochastic processes on bacterioplankton community assembly in 35 shallow ponds along a eutrophication gradient in Belgium and assessed the direct and indirect effects of phytoplankton and zooplankton community variation on bacterioplankton assembly through a path analysis and network analysis. Environmental filtering by abiotic factors (suspended matter concentration and pH) explained the largest part of the bacterioplankton community variation. Phytoplankton community structure affected bacterioplankton structure through its effect on variation in chlorophyll-a and suspended matter concentration. Bacterioplankton communities were also spatially structured through pH. Overall, our results indicate that environmental variation is a key component driving bacterioplankton assembly along a eutrophication gradient and that indirect biotic interactions can also be important in explaining bacterioplankton community composition. Furthermore, eutrophication led to divergence in community structure and more eutrophic ponds had a higher diversity of bacteria.
生物相互作用被认为是构建浮游细菌群落组装的关键因素,但在复合种群研究中很少被包括在内。池塘和湖泊的富营养化提供了一个有用的机会,可以评估浮游细菌组装如何受到特定环境条件的影响,特别是与浮游植物和浮游动物等其他营养水平的生物相互作用的影响。在这里,我们评估了比利时沿富营养化梯度的 35 个浅池塘中浮游细菌群落组装的确定性和随机性过程的重要性,并通过路径分析和网络分析评估了浮游植物和浮游动物群落变化对浮游细菌组装的直接和间接影响。由非生物因素(悬浮物浓度和 pH 值)引起的环境过滤解释了浮游细菌群落变化的最大部分。浮游植物群落结构通过对叶绿素-a 和悬浮物浓度变化的影响来影响浮游细菌结构。浮游细菌群落也通过 pH 值在空间上具有结构。总体而言,我们的结果表明,环境变化是沿富营养化梯度驱动浮游细菌组装的关键组成部分,间接生物相互作用也可以在解释浮游细菌群落组成方面发挥重要作用。此外,富营养化导致群落结构的分歧,富营养化程度较高的池塘中细菌的多样性更高。