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产气弧菌的黄曲霉毒素暴露作为产生黄曲霉毒素合成抑制剂的新系统

Aflatoxin-Exposure of Vibrio gazogenes as a Novel System for the Generation of Aflatoxin Synthesis Inhibitors.

作者信息

Gummadidala Phani M, Chen Yung Pin, Beauchesne Kevin R, Miller Kristen P, Mitra Chandrani, Banaszek Nora, Velez-Martinez Michelle, Moeller Peter D R, Ferry John L, Decho Alan W, Chanda Anindya

机构信息

Department of Environmental Health Science, Arnold School of Public Health, University of South Carolina, Columbia SC, USA.

National Ocean Service, Hollings Marine Laboratory, Charleston SC, USA.

出版信息

Front Microbiol. 2016 Jun 3;7:814. doi: 10.3389/fmicb.2016.00814. eCollection 2016.

Abstract

Aflatoxin is a mycotoxin and a secondary metabolite, and the most potent known liver carcinogen that contaminates several important crops, and represents a significant threat to public health and the economy. Available approaches reported thus far have been insufficient to eliminate this threat, and therefore provide the rational to explore novel methods for preventing aflatoxin accumulation in the environment. Many terrestrial plants and microbes that share ecological niches and encounter the aflatoxin producers have the ability to synthesize compounds that inhibit aflatoxin synthesis. However, reports of natural aflatoxin inhibitors from marine ecosystem components that do not share ecological niches with the aflatoxin producers are rare. Here, we show that a non-pathogenic marine bacterium, Vibrio gazogenes, when exposed to low non-toxic doses of aflatoxin B1, demonstrates a shift in its metabolic output and synthesizes a metabolite fraction that inhibits aflatoxin synthesis without affecting hyphal growth in the model aflatoxin producer, Aspergillus parasiticus. The molecular mass of the predominant metabolite in this fraction was also different from the known prodigiosins, which are the known antifungal secondary metabolites synthesized by this Vibrio. Gene expression analyses using RT-PCR demonstrate that this metabolite fraction inhibits aflatoxin synthesis by down-regulating the expression of early-, middle-, and late- growth stage aflatoxin genes, the aflatoxin pathway regulator, aflR and one global regulator of secondary metabolism, laeA. Our study establishes a novel system for generation of aflatoxin synthesis inhibitors, and emphasizes the potential of the under-explored Vibrio's silent genome for generating new modulators of fungal secondary metabolism.

摘要

黄曲霉毒素是一种霉菌毒素和次生代谢产物,是已知最具强效的肝脏致癌物,它会污染几种重要农作物,对公众健康和经济构成重大威胁。迄今为止报道的现有方法不足以消除这种威胁,因此有理由探索预防黄曲霉毒素在环境中积累的新方法。许多与黄曲霉毒素产生菌共享生态位并接触黄曲霉毒素产生菌的陆生植物和微生物都有能力合成抑制黄曲霉毒素合成的化合物。然而,关于来自与黄曲霉毒素产生菌不共享生态位的海洋生态系统成分的天然黄曲霉毒素抑制剂的报道却很少。在此,我们表明,一种非致病性海洋细菌——产气弧菌,当暴露于低无毒剂量的黄曲霉毒素B1时,其代谢产物会发生变化,并合成一种代谢产物组分,该组分可抑制黄曲霉毒素合成,而不影响模式黄曲霉毒素产生菌——寄生曲霉的菌丝生长。该组分中主要代谢产物的分子量也与已知的灵菌红素不同,灵菌红素是由这种弧菌合成的已知抗真菌次生代谢产物。使用逆转录聚合酶链反应(RT-PCR)进行的基因表达分析表明,该代谢产物组分通过下调黄曲霉毒素早期、中期和后期生长阶段基因、黄曲霉毒素途径调节因子aflR以及一种次生代谢全局调节因子laeA的表达来抑制黄曲霉毒素合成。我们的研究建立了一种生成黄曲霉毒素合成抑制剂的新系统,并强调了尚未充分探索的弧菌沉默基因组在生成真菌次生代谢新调节剂方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ea3/4891353/8d9106d5218d/fmicb-07-00814-g001.jpg

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