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蓝藻毒素:生物合成途径和进化根源。

Cyanobacterial toxins: biosynthetic routes and evolutionary roots.

机构信息

Department of Microbiology, Institute of Biochemistry and Biology, University of Potsdam, Golm, Germany.

出版信息

FEMS Microbiol Rev. 2013 Jan;37(1):23-43. doi: 10.1111/j.1574-6976.2012.12000.x. Epub 2012 Oct 10.

Abstract

Cyanobacteria produce an unparalleled variety of toxins that can cause severe health problems or even death in humans, and wild or domestic animals. In the last decade, biosynthetic pathways have been assigned to the majority of the known toxin families. This review summarizes current knowledge about the enzymatic basis for the production of the hepatotoxins microcystin and nodularin, the cytotoxin cylindrospermopsin, the neurotoxins anatoxin and saxitoxin, and the dermatotoxin lyngbyatoxin. Elucidation of the biosynthetic pathways of the toxins has paved the way for the development of molecular techniques for the detection and quantification of the producing cyanobacteria in different environments. Phylogenetic analyses of related clusters from a large number of strains has also allowed for the reconstruction of the evolutionary scenarios that have led to the emergence, diversification, and loss of such gene clusters in different strains and genera of cyanobacteria. Advances in the understanding of toxin biosynthesis and evolution have provided new methods for drinking-water quality control and may inspire the development of techniques for the management of bloom formation in the future.

摘要

蓝藻产生了无与伦比的多种毒素,这些毒素会导致人类和野生动物的严重健康问题,甚至死亡。在过去的十年中,生物合成途径已被分配给大多数已知的毒素家族。本综述总结了目前关于微囊藻毒素和节球藻毒素、细胞毒素柱孢藻毒素、神经毒素anatoxin 和 saxitoxin 以及皮肤毒素 lyngbyatoxin 的产生的酶促基础的知识。这些毒素的生物合成途径的阐明为在不同环境中检测和定量产生这些蓝藻的分子技术的发展铺平了道路。从大量菌株中相关簇的系统发育分析也允许重建导致这些基因簇在不同蓝藻菌株和属中出现、多样化和丢失的进化情景。对毒素生物合成和进化的理解的进展为饮用水质量控制提供了新的方法,并可能激发未来用于控制水华形成的技术的发展。

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