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链格孢中真菌毒素生物合成的调控。

Regulation of mycotoxin biosynthesis inAlternaria.

机构信息

National Veterinary Institute, Box 7073, S-750 07, Uppsala, Sweden.

出版信息

Mycotoxin Res. 1991 Mar;7(1):8-10. doi: 10.1007/BF03192157.

Abstract

The genusAlternaria is responsible for different plant diseases such as tobacco brown spot, tomato blight, and citrus seedling chlorosis but can also be present during storage of grain. The objective of the present paper is to summarize the knowledge concerning regulation of secondary metabolism inAlternaria, particularA alternata (A tenuis). The paper mainly deals with regulation of polyketide biosynthesis, one of the major pathways leading to the biosynthesis of mycotoxins inAlternaria.The mostly studiedAlternaria mycotoxins are dibenzopyrones such as alternariol (AOH) and alternariol monomethyl ether (AME) and altenuene along with the tetramic acid tenuazonic acid.The biosynthesis ofAlternaria mycotoxins has been reviewed by Stinson (12). Most information is available for the biosynthesis of the polyketides AOH / AME while a few biosynthetic studies have been accomplished for tenuazonic acid (11).

摘要

链格孢属是引起不同植物病害的病原菌,如烟草褐斑病、番茄早疫病和柑橘幼苗黄化病,但也存在于谷物储存过程中。本文的目的是总结链格孢属(特别是 A Alternata(A tenuis))中次生代谢物调控的知识。本文主要论述聚酮生物合成的调控,聚酮生物合成是 Alternaria 中产生霉菌毒素的主要途径之一。研究最多的 Alternaria 霉菌毒素是二苯并吡喃类化合物,如 alternariol(AOH)和 alternariol monomethyl ether(AME)以及altenuene 以及四氢酸 tenuazonic acid。霉菌毒素的生物合成已由 Stinson(12)综述。对于 AOH/AME 聚酮的生物合成已经有了大量的信息,而对于 tenuazonic acid(11)的生物合成则进行了一些研究。

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