舟状虫
硅藻
沉积物
布鲁姆
生物量(生态学)
潮坪
藻类
生物
生态学
胞外聚合物
海洋学
环境科学
生物膜
植物
地质学
细菌
古生物学
遗传学
作者
Beomgi Kim,Jongmin Lee,Junsung Noh,Hanna Bae,Changkeun Lee,Hun Jun Ha,Kyu-Won Hwang,Dong-U Kim,Bong-Oh Kwon,Ho Kyung Ha,Guillaume Pierre,Cédric Delattre,Philippe Michaud,Jong Seong Khim
标识
DOI:10.1016/j.marpolbul.2021.112780
摘要
The physical functions of extracellular polymeric substances (EPS), viz., by-product of microphytobenthos (MPB), in tidal flat system are well documented, but some ecological aspects remain unknown. We investigated MPB biomass (Chl-a), EPS, diatom assemblage, and erodibility in two contrasting tidal flat environments (megatidal vs. macrotidal flat) in the Yellow Sea. Thick biofilms were observed when MPB bloomed, with high Chl-a and increased EPS concentrations. Among diatom genera, Navicula was the most dominant taxa found over the year (mean 41%) in both areas. Compared with non-bloom periods, the erodibility decreased by 54–73% as biofilm thickened during the blooms. It was attributed to the elevated abundance of large-sized (>40 μm) Navicula, which was expected to secrete large amounts of EPS. Overall, we successfully demonstrated spatiotemporal differences of sediment stabilization that significantly related to ecological variations of MPB, and identified the key diatom genus as a "sediment stabilizer" in the typical tidal flats of the Yellow Sea.
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