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Abundance of Broad Bacterial Taxa in the Sargasso Sea Explained by Environmental Conditions but Not Water Mass

机译:藻类海中广泛的细菌类群的丰富度是由环境条件而非水团所解释

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To explore the potential linkage between distribution of marine bacterioplankton groups, environmental conditions, and water mass, we investigated the factors determining the abundance of bacterial taxa across the hydrographically complex Subtropical Convergence Zone in the Sargasso Sea. Based on information from 16S rRNA gene clone libraries from various locations and two depths, abundances of the predominant taxa (eubacteria, Archaea , Alphaproteobacteria , Gammaproteobacteria , Bacteroidetes , and the Roseobacter , SAR11, and SAR86 clades) were quantified by real-time PCR. In addition, the abundances of Synechococcus , Prochlorococcus , and picoalgae were determined by flow cytometry. Linear multiple-regression models determining the relative effects of eight environmental variables and of water mass explained 35 to 86% of the variation in abundance of the quantified taxa, even though only one to three variables were significantly related to any particular taxon's abundance. Most of the variation in abundance was explained by depth and chlorophyll a . The predominant phototrophs, Prochlorococcus and picoalgae, were negatively correlated with phosphate, whereas eubacteria, heterotrophic bacteria, and SAR86 were negatively correlated with nitrite. Water mass showed limited importance for explaining the abundance of the taxonomical groups (significant only for Roseobacter , explaining 14% of the variation). The results suggest the potential for predicting the abundance of broad bacterioplankton groups throughout the Sargasso Sea using only a few environmental parameters.
机译:为了探索海洋浮游生物群分布,环境条件和水量之间的潜在联系,我们调查了确定整个Sargasso海中水文复杂的亚热带收敛带中细菌类群数量的因素。根据来自不同位置和两个深度的16S rRNA基因克隆文库的信息,通过实时PCR定量了主要分类单元(真细菌,古细菌,丙种细菌,丙种细菌,拟杆菌和玫瑰果细菌,SAR11和SAR86进化枝)的丰度。此外,通过流式细胞仪测定了球菌,原球菌和微藻的丰度。线性多元回归模型确定了八个环境变量和水质的相对影响,尽管定量变量中只有一到三个变量与任何特定分类单元的丰度显着相关,但它们解释了量化分类单元的丰度变化的35%至86%。丰度的大部分变化可以用深度和叶绿素a来解释。主要的光养菌,原球菌和微微藻类与磷酸盐呈负相关,而真细菌,异养细菌和SAR86与亚硝酸盐呈负相关。水质量对于解释分类组的丰富性显示出有限的重要性(仅对玫瑰杆菌有意义,解释了14%的变化)。结果表明,仅使用一些环境参数,就可以预测整个Sargasso海中大量浮游细菌的数量。

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