Yang Tao-Tao, Liu Yong, Tan Sha, Wang Wen-Xiong, Wang Xun
Joint Laboratory of Guangdong Province and Hong Kong Region on Marine Bioresource Conservation and Exploitation, College of Marine Sciences, South China Agricultural University, Guangzhou, 510642, China.
Key Laboratory of South China Sea Fishery Resources Exploitation & Utilization, Ministry of Agriculture and Rural Affairs, South China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Guangzhou, 510300, China.
Environ Pollut. 2021 May 15;277:116768. doi: 10.1016/j.envpol.2021.116768. Epub 2021 Feb 16.
Both inorganic (IHg) and organic (MeHg) forms of Hg can be converted into each other by methylation or demethylation, leading to changes of Hg speciation and distribution in fish. However, Hg biotransformation in fish is not thoroughly understood and the key factors in this process are unclear. The present study investigated the in vivo Hg transformation in a marine fish (Acanthopagrus latus) and explored the roles of intestinal microbiota in Hg biotransformation. We first demonstrated that Hg methylation or demethylation occurred in the fish gut under dietary IHg or MeHg exposure, respectively. The demethylation was observed to be faster than methylation, suggesting that demethylation could significantly influence the Hg speciation in fish. This study also strongly suggested that intestinal microbiota played a predominant role in Hg biotransformation and thus significantly affected the overall Hg accumulation and distribution in fish body. The richness of Hg methylators or demethylators was elevated under IHg or MeHg treatment, respectively. Furthermore, the intestinal microbiota composition was also altered by Hg exposure. This study highlights the importance of intestinal microbiota in Hg biotransformation in fish body, and suggests that modulating the gut microbiome could be a possible solution to minimize Hg contamination in fish.
汞的无机(IHg)和有机(甲基汞,MeHg)形式可通过甲基化或去甲基化相互转化,导致鱼类体内汞形态和分布的变化。然而,鱼类体内汞的生物转化尚未被完全理解,这一过程中的关键因素也不清楚。本研究调查了海水鱼(鲷鱼)体内汞的转化情况,并探讨了肠道微生物群在汞生物转化中的作用。我们首先证明,在分别暴露于膳食无机汞或甲基汞的情况下,鱼类肠道中会发生汞的甲基化或去甲基化。观察到去甲基化比甲基化更快,这表明去甲基化可能会显著影响鱼类体内汞的形态。本研究还强烈表明,肠道微生物群在汞生物转化中起主要作用,从而显著影响鱼体内汞的总体积累和分布。在无机汞或甲基汞处理下,汞甲基化菌或去甲基化菌的丰度分别升高。此外,汞暴露也改变了肠道微生物群的组成。本研究强调了肠道微生物群在鱼体汞生物转化中的重要性,并表明调节肠道微生物组可能是减少鱼类汞污染的一种可行解决方案。