The alteration of gut microbiome community play an important role in mercury biotransformation in largemouth bass.

The alteration of gut microbiome community play an important role in mercury biotransformation in largemouth bass.
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DOI:
10.1016/j.envres.2021.112026
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发表时间:
2021-09
影响因子:
8.3
通讯作者:
S. Tan;Xiaowei Xu;Hao Cheng;Junjie Wang;Xun Wang
S. Tan;Xiaowei Xu;Hao Cheng;Junjie Wang;Xun Wang
中科院分区:
环境科学与生态学2区
文献类型:
--
作者:
S. Tan;Xiaowei Xu;Hao Cheng;Junjie Wang;Xun Wang

文献摘要

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汞(Hg)生物转化是一个重要过程,可以影响鱼类中汞的形态形成和生物富集。肠道微生物群被认为参与了这一过程。然而,汞在鱼类中的生物转化仍不清楚,肠道微生物群对不同汞暴露情况的反应尚未得到很好的解决。本研究调查了淡水鱼(Micropterus salmoides)中汞的生物富集和生物转化,并表征了膳食无机汞(IHg)或甲基汞(MeHg)暴露下肠道微生物群落的特征,旨在评估肠道微生物群活动对汞内部处理和归宿的影响。在 IHg 暴露下的鱼中观察到显着的 Hg 甲基化,而在 MeHg 处理的鱼中没有发生去甲基化。 IHg 和 MeHg 都可以显着改变肠道微生物组的群落组成。食物中添加的甲基汞可以促进甲基化物的生长,从而导致鱼肠道中甲基汞的产量增加。然而,在 IHg 或 MeHg 暴露下,去甲基化剂的丰度大大降低,导致去甲基化过程可以忽略不计。结果强烈表明肠道细菌群落的行为在生物转化过程的存在或不存在中发挥着重要作用。这项研究阐明了肠道微生物组在汞生物转化过程中的重要性,并有助于为理解现实环境中鱼类的汞生物积累提供新的视角。
Mercury (Hg) biotransformation is an important process that can affect the speciation and bioaccumulation of Hg in fish. The intestinal microbiota has been suggested to take part in this process. However, Hg biotransformation in fish is still unclear and the responses of gut microbiota to different Hg exposure scenarios have not been well addressed. The present study investigated the bioaccumulation and biotransformation of Hg in a freshwater fish (Micropterus salmoides) and characterized the gut microbiome community under dietary inorganic Hg (IHg) or methylmercury (MeHg) exposure, aiming to evaluate the effects of gut microbiome's activities on the internal-handling and fate of Hg in fish. Significant Hg methylation was observed in fish under IHg exposure, whereas there was no demethylation occurred in MeHg-treated fish. Both IHg and MeHg could significantly alter the community composition of gut microbiome. The administrated IHg in the food could enhance the growth of methylators, resulting in additional MeHg production in fish gut. However, abundance of demethylators was greatly decreased under either IHg or MeHg exposure, leading the demethylation process to be negligible. The results strongly suggested that the behaviors of gut bacterial community played an important role in the presence or absence of biotransformation processes. This study elucidated the importance of gut microbiome in Hg biotransformation process, and helped to develop a novel perspective to understand the Hg bioaccumulation of fish in realistic environment.