Université de Toulon, Aix Marseille Université, CNRS, IRD, Mediterranean Institute of Oceanography (MIO), UM 110, 83041 Toulon, Cedex 9, Franc.
Université de Toulon, MAPIEM, EA 4323, Toulon, 83041 Toulon, Cedex 9, Franc.
FEMS Microbiol Ecol. 2020 Jun 1;96(6). doi: 10.1093/femsec/fiaa048.
Our understanding of environmental factors controlling prokaryotic community is largely hampered by the large environmental variability across spatial scales (e.g. trace metal contamination, nutrient enrichment and physicochemical variations) and the broad diversity of bacterial pre-exposure to environmental factors. In this article, we investigated the specific influence of copper (Cu) and lead (Pb) on prokaryotic communities from the uncontaminated site, using mesocosm experiments. In addition, we studied how pre-exposure (i.e. life history) affects communities, with reference to previous metal exposure on the response of three prokaryotic communities to similar Cu exposition. This study showed a stronger influence of Cu contamination than Pb contamination on prokaryotic diversity and structure. We identified 12 and 34 bacterial families and genera, respectively, contributing to the significant differences observed in community structure between control and spiked conditions. Taken altogether, our results point toward a combination of direct negative responses to Cu contamination and indirect responses mediated by interaction with phytoplankton. These identified responses were largely conditioned by the previous exposure of community to contaminants.
我们对控制原核生物群落的环境因素的理解在很大程度上受到空间尺度上的巨大环境变异性(例如痕量金属污染、营养物质富化和物理化学变化)以及细菌对环境因素预先暴露的广泛多样性的限制。在本文中,我们使用中观实验研究了来自未受污染地点的铜(Cu)和铅(Pb)对原核生物群落的具体影响。此外,我们研究了预先暴露(即生活史)如何影响群落,参考了先前金属暴露对三种原核生物群落对类似 Cu 暴露的反应的影响。这项研究表明,Cu 污染对原核生物多样性和结构的影响比 Pb 污染更强。我们分别鉴定出 12 个和 34 个细菌科和属,这些科和属对对照和加标条件下群落结构观察到的显著差异有贡献。总的来说,我们的结果表明,Cu 污染的直接负面反应与通过与浮游植物相互作用介导的间接反应相结合。这些确定的反应在很大程度上取决于群落先前对污染物的暴露。