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真菌中替代硫源的同化。

Assimilation of alternative sulfur sources in fungi.

机构信息

Department of Molecular Sciences, Swedish University of Agricultural Sciences, Box 7015, 750 07, Uppsala, Sweden.

出版信息

World J Microbiol Biotechnol. 2018 Mar 17;34(4):51. doi: 10.1007/s11274-018-2435-6.

Abstract

Fungi are well known for their metabolic versatility, whether it is the degradation of complex organic substrates or the biosynthesis of intricate secondary metabolites. The vast majority of studies concerning fungal metabolic pathways for sulfur assimilation have focused on conventional sources of sulfur such as inorganic sulfur ions and sulfur-containing biomolecules. Less is known about the metabolic pathways involved in the assimilation of so-called "alternative" sulfur sources such as sulfides, sulfoxides, sulfones, sulfonates, sulfate esters and sulfamates. This review summarizes our current knowledge regarding the structural diversity of sulfur compounds assimilated by fungi as well as the biochemistry and genetics of metabolic pathways involved in this process. Shared sequence homology between bacterial and fungal sulfur assimilation genes have lead to the identification of several candidate genes in fungi while other enzyme activities and pathways so far appear to be specific to the fungal kingdom. Increased knowledge of how fungi catabolize this group of compounds will ultimately contribute to a more complete understanding of sulfur cycling in nature as well as the environmental fate of sulfur-containing xenobiotics.

摘要

真菌以其代谢的多样性而闻名,无论是复杂有机底物的降解还是复杂次生代谢物的生物合成。绝大多数关于真菌硫同化代谢途径的研究都集中在传统的硫源上,如无机硫离子和含硫生物分子。关于所谓的“替代”硫源(如硫化物、亚砜、砜、磺酸盐、硫酸酯和磺胺酸盐)同化所涉及的代谢途径,人们知之甚少。这篇综述总结了我们目前对真菌同化的硫化合物的结构多样性以及参与这一过程的代谢途径的生物化学和遗传学的了解。细菌和真菌硫同化基因之间的共享序列同源性导致了真菌中几个候选基因的鉴定,而其他酶活性和途径迄今为止似乎是真菌界所特有的。增加对真菌如何代谢这组化合物的了解,最终将有助于更全面地了解自然界中的硫循环以及含硫外来化合物的环境归宿。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7818/5857272/080691469e52/11274_2018_2435_Fig1_HTML.jpg

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