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蓝细菌与金属的相互作用:需求、毒性及生态影响

Cyanobacteria metal interactions: requirements, toxicity, and ecological implications.

作者信息

Baptista Mafalda S, Vasconcelos M Teresa

机构信息

Chemistry Department, Faculty of Sciences, University of Porto, Porto, Portugal.

出版信息

Crit Rev Microbiol. 2006;32(3):127-37. doi: 10.1080/10408410600822934.

Abstract

The environmental health-related relevance of cyanobacteria is primarily related to their ability to produce a wide range of toxins, which are known to be hazardous to many organisms, including human beings. The occurrence of cyanobacterial blooms has been related to eutrophic surface water. In the bloom-forming process the levels of phosphorus and nitrogen have been well documented but information regarding concentrations of other chemicals (inorganic, organo-metallic, and organic) is still incipient. Several contaminants, like trace metals, elicit a variety of acute and chronic toxicity effects, but cyanobacteria also have the capability to accumulate, detoxify, or metabolize such substances, to some extent. The role of cyanobacterial exudates has been proved a means of both nutrient acquisition and detoxification. In addition, cyanobacteria are effective biological metal sorbents, representing an important sink for metals in aquatic environment. Understanding the fundamental physicochemical mechanisms of trace metal bio-uptake by cyanobacteria in natural systems is a step towards identifying under what conditions cyanobacterial growth is favored and to ascertain the mechanisms by which blooms (and toxin production) are triggered. In this review the cyanobacterial interactions with metals will be discussed, focusing on freshwater systems.

摘要

蓝藻细菌与环境卫生的相关性主要与其产生多种毒素的能力有关,这些毒素已知对包括人类在内的许多生物有害。蓝藻水华的出现与富营养化地表水有关。在水华形成过程中,磷和氮的含量已有充分记录,但关于其他化学物质(无机、有机金属和有机)浓度的信息仍处于初始阶段。几种污染物,如痕量金属,会引发各种急性和慢性毒性效应,但蓝藻细菌在一定程度上也有积累、解毒或代谢此类物质的能力。蓝藻分泌物的作用已被证明是一种获取营养和解毒的方式。此外,蓝藻细菌是有效的生物金属吸附剂,是水生环境中金属的重要汇。了解自然系统中蓝藻细菌对痕量金属生物吸收的基本物理化学机制,是朝着确定在何种条件下有利于蓝藻细菌生长以及确定引发水华(和毒素产生)的机制迈出的一步。在本综述中,将讨论蓝藻细菌与金属的相互作用,重点是淡水系统。

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