Department of Biological Sciences and Advanced Environmental Research Institute , University of North Texas , 1155 Union Circle , Denton , Texas 76203 , United States.
Department of Microbiology, Immunology and Genetics , University of North Texas Health Science Center , 3500 Camp Bowie Blvd. , Fort Worth , Texas 76107 , United States.
Environ Sci Technol. 2018 Aug 7;52(15):8774-8784. doi: 10.1021/acs.est.8b01150. Epub 2018 Jul 13.
Mercury is a global contaminant, which may be microbially transformed into methylmercury (MeHg), which bioaccumulates. This results in potentially toxic body burdens in high trophic level organisms in aquatic ecosystems and maternal transfer to offspring. We previously demonstrated effects on developing fish including hyperactivity, altered time-to-hatch, reduced survival, and dysregulation of the dopaminergic system. A link between gut microbiota and central nervous system function in teleosts has been established with implications for behavior. We sequenced gut microbiomes of fathead minnows exposed to dietary MeHg to determine microbiome effects. Dietary exposures were repeated with adult CD-1 mice. Metabolomics was used to screen for metabolome changes in mouse brain and larval fish, and results indicate effects on lipid metabolism and neurotransmission, supported by microbiome data. Findings suggest environmentally relevant exposure scenarios may cause xenobiotic-mediated dysbiosis of the gut microbiome, contributing to neurotoxicity. Furthermore, small-bodied teleosts may be a useful model species for studying certain types of neurodegenerative diseases, in lieu of higher vertebrates.
汞是一种全球性污染物,可能会被微生物转化为甲基汞(MeHg),从而发生生物累积。这会导致水生生态系统中处于高营养级别的生物体的体内负荷潜在毒性增加,并通过母体向后代转移。我们之前已经证明了它对发育中的鱼类的影响,包括过度活跃、孵化时间延长、存活率降低以及多巴胺能系统失调。已经在硬骨鱼类中建立了肠道微生物群与中枢神经系统功能之间的联系,这对行为有影响。我们对暴露于膳食甲基汞的胖头鱼的肠道微生物组进行了测序,以确定微生物组的影响。用成年 CD-1 小鼠重复了饮食暴露。代谢组学用于筛选小鼠大脑和幼鱼的代谢组变化,结果表明代谢组数据支持脂质代谢和神经传递受到影响。研究结果表明,在环境相关的暴露情况下,可能会导致肠道微生物群的外源性生物失调,从而导致神经毒性。此外,小型硬骨鱼类可能是研究某些类型的神经退行性疾病的有用模式物种,而不是高等脊椎动物。