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Particle-Associated Microbial Community in a Subtropical Lake During Thermal Mixing and Phytoplankton Succession

机译:热混和浮游植物演替过程中亚热带湖泊中的颗粒相关微生物群落

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摘要

Ecosystem dynamics in monomictic lakes are characterized by seasonal thermal mixing and stratification. These physical processes bring about seasonal variations in nutrients and organic matter fluxes, affecting the biogeochemical processes that occur in the water column. Physical and chemical dynamics are generally reflected in seasonal structural changes in the phytoplankton and bacterio-plankton community. In this study, we analyzed, using 16S rRNA amplicon sequencing, the structure of the bacterial community associated with large particles (>20 μm) in Lake Kinneret (Sea of Galilee, Israel), and its associations to phytoplankton populations. The study was carried out during late winter and early spring, a highly dynamic period in terms of thermal mixing, nutrient availability, and shifts in phytoplankton composition. Structural changes in the bacterioplankton population corresponded with limnological variations in the lake. In terms of the entire heterotrophic community, the structural patterns of particle-associated bacteria were mainly correlated with abiotic factors such as pH, ammonia, water temperature and nitrate. However, analysis of microbial taxon-specific correlations with phytoplankton species revealed a strong potential link between specific bacterial populations and the presence of different phytoplankton species, such as the cyanobacterium Microcystis, as well as the dinoflagellates Peridinium and Peridiniopsis. We found that Brevundimonas, a common freshwater genus, and Bdellovibrio, a well-known Gram-negative bacteria predator, were positively associated to Microcystis, suggesting a potentially important role of these three taxa in the microbial ecology of the lake. Our results show that the dynamics of environmental abiotic conditions, rather than specific phytoplankton assemblages, are the main factors positively correlated with changes in the community structure as a whole. Nevertheless, some specific bacteria may interact and be linked with specific phytoplankton, which may potentially control the dynamic patterns of the microbial community.
机译:单体湖泊的生态系统动态特征是季节性的热混合和分层。这些物理过程导致养分和有机质通量的季节性变化,从而影响水柱中发生的生物地球化学过程。物理和化学动力学通常反映在浮游植物和浮游细菌群落的季节性结构变化中。在这项研究中,我们使用16S rRNA扩增子序列分析了Kinneret湖(以色列加利利海)中与大颗粒(> 20μm)相关的细菌群落的结构及其与浮游植物种群的关系。该研究是在冬季末期和初春期间进行的,这是一个热混合,养分可利用和浮游植物组成变化的高度动态时期。浮游细菌种群的结构变化与湖泊中的湖泊学变化相对应。就整个异养菌群落而言,颗粒相关细菌的结构模式主要与非生物因素有关,例如pH,氨,水温和硝酸盐。但是,对微生物分类群与浮游植物种类的相关性分析显示,特定细菌种群与不同浮游植物种类(如蓝藻微囊藻,鞭毛和鞭毛的鞭毛)之间存在很强的潜在联系。我们发现常见的淡水属Brevundimonas和众所周知的革兰氏阴性细菌捕食者Bdellovibrio与微囊藻正相关,表明这三个类群在湖泊的微生物生态学中具有潜在的重要作用。我们的研究结果表明,环境非生物条件的动态而不是特定的浮游植物组合,是与整个群落结构的变化呈正相关的主要因素。但是,某些特定的细菌可能会相互作用并与特定的浮游植物联系在一起,这可能会控制微生物群落的动态模式。

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