Amadei Martínez Luz, Sabbe Koen, D'hondt Sofie, Dasseville Renaat, Daveloose Ilse, Verstraete Tine, Chaerle Peter, Brion Natacha, Maris Tom, Meire Patrick, Vyverman Wim
Laboratory of Protistology and Aquatic Ecology, Department of Biology, Ghent University, Ghent, Belgium.
Department of Archeology, Environmental Change and Geochemistry, Vrije Universiteit Brussel, Brussels, Belgium.
Environ Microbiol Rep. 2025 Aug;17(4):e70135. doi: 10.1111/1758-2229.70135.
The drivers of spatiotemporal changes in microorganism's functional community structure remain poorly understood. Using DNA-amplicon sequencing we studied the spatiotemporal dynamics of bacterial and eukaryotic microbial communities in the freshwater and brackish tidal reaches of the Schelde estuary (Belgium) from 2018 to 2021. Our analyses revealed pronounced seasonal and longitudinal turnover in autotrophic and heterotrophic microbiota, mainly driven by changes in freshwater discharge, which modulate the salinity and turbidity gradient. Higher discharge in early spring led to a more uniform community composition across the estuary, with higher relative abundances of heterotrophic eukaryotes. As discharge decreased in late spring, the salinity gradient and associated turnover in community composition became more accentuated, with Actinomycetota and diatoms dominating the upstream reaches, and ciliates, fungi and marine bacteria being relatively more important downstream from the maximum turbidity zone (MTZ). This study revealed fine-scale turnover in (semi)cryptic phytoplankton taxa and spatiotemporal changes in parasitism linked to bloom termination. High discharge due to exceptionally heavy rainfall resulted in the disruption of the phytoplankton bloom, more downstream spreading of freshwater species and a decline in brackish and polyhaline species. These results emphasise the intricate link between hydrodynamics and microbial community dynamics and ecological functions in estuarine ecosystems.
微生物功能群落结构的时空变化驱动因素仍知之甚少。我们利用DNA扩增子测序技术,研究了2018年至2021年期间比利时斯海尔德河口淡水和咸淡水潮汐河段细菌和真核微生物群落的时空动态。我们的分析揭示了自养和异养微生物群中明显的季节性和纵向更替,主要由淡水排放的变化驱动,淡水排放调节了盐度和浊度梯度。早春较高的排放量导致整个河口的群落组成更加均匀,异养真核生物的相对丰度更高。随着春末排放量的减少,盐度梯度和群落组成的相关更替变得更加明显,放线菌门和硅藻在上游河段占主导地位,而纤毛虫、真菌和海洋细菌在最大浊度区(MTZ)下游相对更为重要。这项研究揭示了(半)隐秘浮游植物类群的精细尺度更替以及与水华终止相关的寄生现象的时空变化。异常暴雨导致的高排放量导致浮游植物水华中断,淡水物种更多地向下游扩散,咸淡水和多盐性物种减少。这些结果强调了水动力与河口生态系统中微生物群落动态和生态功能之间的复杂联系。