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Aspergillus flavus Secondary Metabolites: More than Just Aflatoxins

机译:黄曲霉次生代谢产物:不仅是黄曲霉毒素

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Aspergillus flavus is best known for producing the family of potent carcinogenic secondary metabolites known as aflatoxins. However, this opportunistic plant and animal pathogen also produces numerous other secondary metabolites, many of which have also been shown to be toxic. While about forty of these secondary metabolites have been identified from A. flavus cultures, analysis of the genome has predicted the existence of at least 56 secondary metabolite gene clusters. Many of these gene clusters are not expressed during growth of the fungus on standard laboratory media. This presents researchers with a major challenge of devising novel strategies to manipulate the fungus and its genome so as to activate secondary metabolite gene expression and allow identification of associated cluster metabolites. In this review, we discuss the genetic, biochemical and bioinformatic methods that are being used to identify previously uncharacterized secondary metabolite gene clusters and their associated metabolites. It is important to identify as many of these compounds as possible to determine their bioactivity with respect to fungal development, survival, virulence and especially with respect to any potential synergistic toxic effects with aflatoxin.
机译:黄曲霉最出名的是能产生有效的致癌次生代谢产物家族,即黄曲霉毒素。但是,这种机会性动植物病原体还产生许多其他次生代谢产物,其中许多也被证明具有毒性。虽然从A中鉴定出了大约40种这些次级代谢产物。在黄av文化中,对基因组的分析已预测至少存在56个次级代谢产物基因簇。在标准实验室培养基上的真菌生长过程中,许多这些基因簇均未表达。这给研究人员提出了一个挑战,即设计新的策略来操纵真菌及其基因组,从而激活次级代谢物基因的表达并鉴定相关的簇状代谢物。在这篇综述中,我们讨论了遗传,生化和生物信息学方法,这些方法正在用于鉴定以前未表征的次生代谢物基因簇及其相关代谢物。重要的是要尽可能多地鉴定这些化合物,以确定它们在真菌发育,存活,毒力方面,尤其是在与黄曲霉毒素的任何潜在协同毒性作用方面的生物活性。

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