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水生生物中砷的生物累积与生物转化

Arsenic bioaccumulation and biotransformation in aquatic organisms.

作者信息

Zhang Wei, Miao Ai-Jun, Wang Ning-Xin, Li Chengjun, Sha Jun, Jia Jianbo, Alessi Daniel S, Yan Bing, Ok Yong Sik

机构信息

Institute of Environmental Research at Greater Bay Area, Key Laboratory for Water Quality and Conservation of the Pearl River Delta, Ministry of Education, Guangzhou University, Guangzhou 510006, China.

State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210023, China.

出版信息

Environ Int. 2022 May;163:107221. doi: 10.1016/j.envint.2022.107221. Epub 2022 Mar 31.

Abstract

Arsenic exists universally in freshwater and marine environments, threatening the survival of aquatic organisms and human health. To elucidate arsenic bioaccumulation and biotransformation processes in aquatic organisms, this review evaluates the dissolved uptake, dietary assimilation, biotransformation, and elimination of arsenic in aquatic organisms and discusses the major factors influencing these processes. Environmental factors such as phosphorus concentration, pH, salinity, and dissolved organic matter influence arsenic absorption from aquatic systems, whereas ingestion rate, gut passage time, and gut environment affect the assimilation of arsenic from foodstuffs. Arsenic bioaccumulation and biotransformation mechanisms differ depending on specific arsenic species and the involved aquatic organism. Although some enzymes engaged in arsenic biotransformation are known, deciphering the complicated synthesis and degradation pathway of arsenobetaine remains a challenge. The elimination of arsenic involves many processes, such as fecal excretion, renal elimination, molting, and reproductive processes. This review facilitates our understanding of the environmental behavior and biological fate of arsenic and contributes to regulation of the environmental risk posed by arsenic pollution.

摘要

砷普遍存在于淡水和海洋环境中,威胁着水生生物的生存和人类健康。为阐明水生生物体内砷的生物累积和生物转化过程,本综述评估了水生生物对砷的溶解吸收、饮食同化、生物转化和排泄,并讨论了影响这些过程的主要因素。磷浓度、pH值、盐度和溶解有机物等环境因素会影响水生系统中砷的吸收,而摄食率、肠道通过时间和肠道环境则会影响食物中砷的同化。砷的生物累积和生物转化机制因特定的砷物种和相关的水生生物而异。虽然已知一些参与砷生物转化的酶,但破解砷甜菜碱复杂的合成和降解途径仍然是一项挑战。砷的排泄涉及许多过程,如粪便排泄、肾脏排泄、蜕皮和生殖过程。本综述有助于我们理解砷的环境行为和生物学归宿,并有助于对砷污染造成的环境风险进行管控。

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