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全球调控因子FfSge1是藤仓镰孢菌中次生代谢物基因簇表达所必需的,但对其致病性并非必需。

The global regulator FfSge1 is required for expression of secondary metabolite gene clusters but not for pathogenicity in Fusarium fujikuroi.

作者信息

Michielse Caroline B, Studt Lena, Janevska Slavica, Sieber Christian M K, Arndt Birgit, Espino Jose Juan, Humpf Hans-Ulrich, Güldener Ulrich, Tudzynski Bettina

机构信息

Institute of Biology and Biotechnology of Plants, Westfälische Wilhelms-University, Schlossplatz 8, Münster, 48143, Germany.

Institute of Bioinformatics and Systems Biology, Helmholtz Zentrum München, Germany Research Center for Environmental Health (GmbH), Ingolstädter Landstr. 1, Neuherberg, 85764, Germany.

出版信息

Environ Microbiol. 2015 Aug;17(8):2690-708. doi: 10.1111/1462-2920.12592. Epub 2014 Oct 9.

Abstract

The plant pathogenic fungus Fusarium fujikuroi is the causal agent of bakanae disease on rice due to its ability to produce gibberellins. Besides these phytohormones, F. fujikuroi is able to produce several other secondary metabolites (SMs). Although much progress has been made in the field of secondary metabolism, the transcriptional regulation of SM biosynthesis is complex and still incompletely understood. Environmental conditions, global as well as pathway-specific regulators and chromatin remodelling have been shown to play major roles. Here, the role of FfSge1, a homologue of the morphological switch regulators Wor1 and Ryp1 in Candida albicans and Histoplasma capsulatum, respectively, is explored with emphasis on secondary metabolism. FfSge1 is not required for formation of conidia and pathogenicity but is involved in vegetative growth. Transcriptome analysis of the mutant Δffsge1 compared with the wild type, as well as comparative chemical analysis between the wild type, Δffsge1 and OE:FfSGE1, revealed that FfSge1 functions as a global activator of secondary metabolism in F. fujikuroi. Double mutants of FfSGE1 and other SM regulatory genes brought insights into the hierarchical regulation of secondary metabolism. In addition, FfSge1 is also required for expression of a yet uncharacterized SM gene cluster containing a non-canonical non-ribosomal peptide synthetase.

摘要

植物病原真菌藤仓镰孢菌(Fusarium fujikuroi)因能产生赤霉素而成为水稻恶苗病的致病因子。除了这些植物激素外,藤仓镰孢菌还能产生其他几种次生代谢产物(SMs)。尽管次生代谢领域已取得很大进展,但SM生物合成的转录调控很复杂,仍未完全了解。环境条件、全局以及途径特异性调节因子和染色质重塑已被证明起主要作用。在此,分别探讨了白色念珠菌(Candida albicans)和荚膜组织胞浆菌(Histoplasma capsulatum)中形态转换调节因子Wor1和Ryp1的同源物FfSge1的作用,重点是次生代谢。分生孢子形成和致病性不需要FfSge1,但它参与营养生长。与野生型相比,突变体Δffsge1的转录组分析以及野生型、Δffsge1和OE:FfSGE1之间的比较化学分析表明,FfSge1在藤仓镰孢菌中作为次生代谢的全局激活因子发挥作用。FfSGE1与其他SM调节基因的双突变体为次生代谢的分级调控提供了见解。此外,FfSge1也是一个含有非经典非核糖体肽合成酶的未表征SM基因簇表达所必需的。

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