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城市化海洋沿岸地区浮游细菌群落因与痕量金属梯度的直接和间接相互作用而发生的变化

Changes in Bacterioplankton Communities Resulting From Direct and Indirect Interactions With Trace Metal Gradients in an Urbanized Marine Coastal Area.

作者信息

Coclet Clément, Garnier Cédric, Durrieu Gaël, Omanović Dario, D'Onofrio Sébastien, Le Poupon Christophe, Mullot Jean-Ulrich, Briand Jean-François, Misson Benjamin

机构信息

Mediterranean Institute of Oceanography (MIO), UM110, CNRS, IRD, Université de Toulon, Aix-Marseille Université, Marseille, France.

MAPIEM, EA 4323, Université de Toulon, Toulon, France.

出版信息

Front Microbiol. 2019 Feb 22;10:257. doi: 10.3389/fmicb.2019.00257. eCollection 2019.

Abstract

Unraveling the relative importance of both environmental conditions and ecological processes regulating bacterioplankton communities is a central goal in microbial ecology. Marine coastal environments are among the most urbanized areas and as a consequence experience environmental pressures. The highly anthropized Toulon Bay (France) was considered as a model system to investigate shifts in bacterioplankton communities along natural and anthropogenic physicochemical gradients during a 1-month survey. In depth geochemical characterization mainly revealed strong and progressive Cd, Zn, Cu, and Pb contamination gradients between the entrance of the Bay and the north-western anthropized area. On the other hand, low-amplitude natural gradients were observed for other environmental variables. Using 16S rRNA gene sequencing, we observed strong spatial patterns in bacterioplankton taxonomic and predicted function structure along the chemical contamination gradient. Variation partitioning analysis demonstrated that multiple metallic contamination explained the largest part of the spatial biological variations observed, but DOC and salinity were also significant contributors. Network analysis revealed that biotic interactions were far more numerous than direct interactions between microbial groups and environmental variables. This suggests indirect effects of the environment, and especially trace metals, on the community through a few taxonomic groups. These spatial patterns were also partially found for predicted bacterioplankton functions, thus indicating a limited functional redundancy. All these results highlight both potential direct influences of trace metals contamination on coastal bacterioplankton and indirect forcing through biotic interactions and cascading.

摘要

揭示环境条件和生态过程对浮游细菌群落的相对重要性是微生物生态学的核心目标。海洋沿岸环境是城市化程度最高的地区之一,因此承受着环境压力。在为期1个月的调查中,高度受人类活动影响的法国土伦湾被视为一个模型系统,用于研究浮游细菌群落在自然和人为理化梯度上的变化。深入的地球化学特征分析主要揭示了该湾入口与西北受人类活动影响地区之间存在强烈且逐渐递增的镉、锌、铜和铅污染梯度。另一方面,其他环境变量呈现出低幅度的自然梯度。通过16S rRNA基因测序,我们观察到浮游细菌分类学和预测功能结构沿化学污染梯度呈现出强烈的空间格局。变异分解分析表明,多种金属污染解释了所观察到的空间生物变异的最大部分,但溶解有机碳和盐度也是重要的影响因素。网络分析显示,生物相互作用远比微生物群落与环境变量之间的直接相互作用更为丰富。这表明环境,尤其是痕量金属,通过少数分类群对群落产生间接影响。这些空间格局在预测的浮游细菌功能中也部分存在,从而表明功能冗余有限。所有这些结果都凸显了痕量金属污染对沿海浮游细菌的潜在直接影响以及通过生物相互作用和级联效应产生的间接影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd1d/6395402/cab756b1bd17/fmicb-10-00257-g001.jpg

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