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Seasonal microbial community dynamics correlate with phytoplankton-derived polysaccharides in surface coastal waters

机译:沿海近岸水域季节性微生物群落动态与浮游植物衍生多糖相关

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摘要

Phytoplankton produce large amounts of polysaccharide gel material known as transparent exopolymer particles (TEP). We investigated the potential links between phytoplankton-derived TEP and microbial community structure in the sea surface microlayer and underlying water at the English Channel time-series station L4 during a spring diatom bloom, and in two adjacent estuaries. Major changes in bacterioneuston and bacterioplankton community structure occurred after the peak of the spring bloom at L4, and coincided with the significant decline of microlayer and water column TEP. Increased abundance of Flavobacteriales and Rhodobacterales in bacterioneuston and bacterioplankton communities at L4 was significantly related to the TEP decline, indicating that both taxa could be responsible. The results suggest that TEP is an important factor in determining microbial diversity in coastal waters, and that TEP utilisation could be a niche occupied by Flavobacteriales and Rhodobacterales.
机译:浮游植物产生大量的多糖凝胶物质,称为透明外聚合物颗粒(TEP)。我们在春季硅藻开花期间以及两个相邻河口调查了英吉利海峡时间序列站L4的浮游植物来源的TEP与海表微层和底层水中微生物群落结构之间的潜在联系。 L4的春季开花高峰之后,细菌的euston和浮游植物群落结构发生了重大变化,并且与微层和水柱TEP的显着下降相吻合。 L4的eueuseuston和浮游植物群落中黄杆菌和红细菌的丰度增加与TEP下降显着相关,表明这两个类群都可能负责。结果表明,TEP是决定沿海水域微生物多样性的重要因素,TEP的利用可能是黄杆菌和红细菌所占据的利基市场。

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