Centre for Ecology and Evolution in Microbial Model Systems, EEMiS, Linnaeus University, Stuvaregatan 4, Kalmar, 39231, Sweden.
Department of Environmental Chemistry, IDAEA-CSIC, Jordi Girona 18-26, Barcelona, 08034, Catalunya, Spain.
Microb Biotechnol. 2019 Sep;12(5):892-906. doi: 10.1111/1751-7915.13441. Epub 2019 Jul 4.
Organic pollutants (OPs) are critically toxic, bioaccumulative and globally widespread. Moreover, several OPs negatively influence aquatic wildlife. Although bacteria are major drivers of the ocean carbon cycle and the turnover of vital elements, there is limited knowledge of OP effects on heterotrophic bacterioplankton. We therefore investigated growth and gene expression responses of the Baltic Sea model bacterium Rheinheimera sp. BAL341 to environmentally relevant concentrations of distinct classes of OPs in 2-h incubation experiments. During exponential growth, exposure to a mix of polycyclic aromatic hydrocarbons, alkanes and organophosphate esters (denoted MIX) resulted in a significant decrease (between 9% and 18%) in bacterial abundance and production compared with controls. In contrast, combined exposure to perfluorooctanesulfonic acids and perfluorooctanoic acids (denoted PFAS) had no significant effect on growth. Nevertheless, MIX and PFAS exposures both induced significant shifts in gene expression profiles compared with controls in exponential growth. This involved several functional metabolism categories (e.g. stress response and fatty acids metabolism), some of which were pollutant-specific (e.g. phosphate acquisition and alkane-1 monooxygenase genes). In stationary phase, only two genes in the MIX treatment were significantly differentially expressed. The substantial direct influence of OPs on metabolism during bacterial growth suggests that widespread OPs could severely alter biogeochemical processes governed by bacterioplankton.
有机污染物(OPs)具有很强的毒性、生物累积性和全球性。此外,一些 OPs 对水生野生动物有负面影响。尽管细菌是海洋碳循环和重要元素周转的主要驱动因素,但对于 OPs 对异养细菌浮游生物的影响知之甚少。因此,我们在 2 小时的孵育实验中,研究了波罗的海模型细菌 Rheinheimera sp. BAL341 对环境相关浓度的不同类别的 OPs 的生长和基因表达反应。在指数生长期,与对照组相比,暴露于多环芳烃、烷烃和有机磷酸酯(表示为 MIX)混合物中,细菌丰度和产量显著下降(9%-18%)。相比之下,全氟辛烷磺酸和全氟辛酸(表示为 PFAS)的联合暴露对生长没有显著影响。然而,与对照组相比,MIX 和 PFAS 暴露在指数生长期都导致基因表达谱发生显著变化。这涉及到几个功能代谢类别(如应激反应和脂肪酸代谢),其中一些是污染物特异性的(如磷酸盐获取和烷烃 1 单加氧酶基因)。在静止期,只有 MIX 处理中的两个基因表达显著差异。OPs 对细菌生长过程中代谢的直接显著影响表明,广泛存在的 OPs 可能会严重改变由浮游细菌控制的生物地球化学过程。