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Linkages between bacterioplankton community composition, heterotrophic

机译:浮游细菌群落组成与异养之间的联系

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We used mesocosm experiments to study the bacterioplankton community in a highly dynamic coastal ecosystem during four contrasting periods of the seasonal cycle: winter mixing, spring phytoplankton bloom, summer stratification and autumn upwelling. A correlation approach was used in order to measure the degree of coupling between the dynamics of major bacterial groups, heterotrophic carbon cycling and environmental factors. We used catalysed reporter deposition-fluorescence in situ hybridization to follow changes in the relative abundance of the most abundant groups of bacteria (Alphaproteobacteria, Gammaproteobacteria and Bacteroidetes). Bacterial carbon flux-related variables included bacterial standing stock, bacterial production and microbial respiration. The environmental factors included both, biotic variables such as chlorophyll-a concentration, primary production, phytoplankton extracellular release, and abiotic variables such as the concentration of dissolved inorganic and organic nutrients. Rapid shifts in the dominant bacterial groups occurred associated to environmental changes and bacterial bulk functions. An alternation between Alphaproteobacteria and Bacteroidetes was observed associated to different phytoplankton growth phases. The dominance of the group Bacteroidetes was related to high bacterial biomass and production. We found a significant, non-spurious, linkage between the relative abundances of major bacterial groups and bacterial carbon cycling. Our results suggest that bacteria belonging to these major groups could actually share a function in planktonic ecosystems.
机译:我们使用中观宇宙实验研究了季节性循环的四个相反时期中高度动态的沿海生态系统中的浮游细菌群落:冬季混合,春季浮游植物开花,夏季分层和秋季上升。为了测量主要细菌群的动力学,异养碳循环和环境因素之间的耦合程度,使用了一种相关方法。我们使用了催化的报告基因沉积-荧光原位杂交技术,以追踪最丰富的细菌群(丙酸杆菌,丙酸杆菌和拟杆菌)的相对丰度变化。细菌碳通量相关的变量包括细菌站立存量,细菌产生和微生物呼吸。环境因素包括生物变量,例如叶绿素-a浓度,初级生产,浮游植物的细胞外释放,以及非生物变量,例如溶解的无机和有机营养物的浓度。优势细菌群的快速移动发生与环境变化和细菌总体功能有关。观察到阿尔法变形杆菌和拟杆菌之间的交替与浮游植物的不同生长期有关。拟杆菌属的优势与高细菌生物量和产量有关。我们发现主要细菌群体的相对丰度与细菌碳循环之间存在显着的,非虚假的联系。我们的结果表明,属于这些主要群体的细菌实际上可以在浮游生态系统中共享功能。

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