Amill Flora, Couture Patrice, Derome Nicolas
Institute of Integrative and Systems Biology, Laval University, Quebec, QC G1V 0A6, Canada.
Centre Eau Terre Environnement, Institut National de la Recherche Scientifique, 490 Rue de la Couronne, Quebec, QC G1K 9A9, Canada.
Microorganisms. 2024 Nov 28;12(12):2449. doi: 10.3390/microorganisms12122449.
Arctic char is a top predator in Arctic waters and is threatened by mercury pollution in the context of changing climate. Gill microbiota is directly exposed to environmental xenobiotics and play a central role in immunity and fitness. Surprisingly, there is a lack of literature studying the effect of mercury on gill microbiota. To fill this knowledge gap, our primary goal was to measure to what extent gill exposure to mercury may alter gill microbiota activity in Arctic char. Specifically, we calculated the correlation between the taxonomic distribution of gill-associated bacterial symbiont activity and total mercury concentration in livers and muscles in wild populations of Arctic char in the Canadian Arctic. Our results showed that total mercury concentrations in tissues were higher in Ekaluktutiak (Nunavut) than in the other sites in Nunavik. Proteobacteria was the main phylum correlated to mercury concentration in both tissues, followed by Bacteroidetes and Cyanobacteria. In the most contaminated sites, and (Proteobacteria) were predominant, while mercury concentration negatively correlated with (Proteobacteria) or (Verrucomicrobia). In summary, we found that mercury contamination correlates with active gill microbiota composition, with potential implications of strains in modulating mercury toxicity, making them interesting for future biomarker studies.
北极红点鲑是北极水域的顶级捕食者,在气候变化的背景下受到汞污染的威胁。鳃微生物群直接暴露于环境中的外源性物质,在免疫和健康方面发挥着核心作用。令人惊讶的是,缺乏研究汞对鳃微生物群影响的文献。为了填补这一知识空白,我们的主要目标是测量北极红点鲑鳃暴露于汞的程度会在多大程度上改变鳃微生物群的活性。具体而言,我们计算了加拿大北极地区野生北极红点鲑种群中与鳃相关的细菌共生体活性的分类分布与肝脏和肌肉中总汞浓度之间的相关性。我们的结果表明,埃卡卢克图蒂亚克(努纳武特地区)组织中的总汞浓度高于努纳维克的其他地点。变形菌门是与两个组织中的汞浓度相关的主要门类,其次是拟杆菌门和蓝细菌门。在污染最严重的地点,[具体菌属](变形菌门)占主导地位,而汞浓度与[具体菌属](变形菌门)或[具体菌属](疣微菌门)呈负相关。总之,我们发现汞污染与活跃的鳃微生物群组成相关,这些菌株在调节汞毒性方面具有潜在影响,使其成为未来生物标志物研究的有趣对象。