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产毒真菌中赭曲霉毒素A生物合成簇的比较基因组分析:环化酶基因参与的新证据

Comparative Genomic Analysis of Ochratoxin A Biosynthetic Cluster in Producing Fungi: New Evidence of a Cyclase Gene Involvement.

作者信息

Ferrara Massimo, Gallo Antonia, Perrone Giancarlo, Magistà Donato, Baker Scott E

机构信息

Institute of Sciences of Food Production (ISPA), National Research Council (CNR), Bari, Italy.

Institute of Sciences of Food Production (ISPA), National Research Council (CNR), Lecce, Italy.

出版信息

Front Microbiol. 2020 Dec 18;11:581309. doi: 10.3389/fmicb.2020.581309. eCollection 2020.

Abstract

The widespread use of Next-Generation Sequencing has opened a new era in the study of biological systems by significantly increasing the catalog of fungal genomes sequences and identifying gene clusters for known secondary metabolites as well as novel cryptic ones. However, most of these clusters still need to be examined in detail to completely understand the pathway steps and the regulation of the biosynthesis of metabolites. Genome sequencing approach led to the identification of the biosynthetic genes cluster of ochratoxin A (OTA) in a number of producing fungal species. Ochratoxin A is a potent pentaketide nephrotoxin produced by and species and found as widely contaminant in food, beverages and feed. The increasing availability of several new genome sequences of OTA producer species in JGI Mycocosm and/or GenBank databanks led us to analyze and update the gene cluster structure in 19 and 2 OTA producing species, resulting in a well conserved organization of OTA core genes among the species. Furthermore, our comparative genome analyses evidenced the presence of an additional gene, previously undescribed, located between the polyketide and non-ribosomal synthase genes in the cluster of all the species analyzed. The presence of a SnoaL cyclase domain in the sequence of this gene supports its putative role in the polyketide cyclization reaction during the initial steps of the OTA biosynthesis pathway. The phylogenetic analysis showed a clustering of OTA SnoaL domains in accordance with the phylogeny of OTA producing species at species and section levels. The characterization of this new OTA gene, its putative role and its expression evidence in three important representative producing species, are reported here for the first time.

摘要

新一代测序技术的广泛应用显著增加了真菌基因组序列的目录,同时识别出了已知次级代谢产物以及新的隐性代谢产物的基因簇,从而开启了生物系统研究的新纪元。然而,为了全面理解代谢产物生物合成的途径步骤和调控机制,这些基因簇中的大多数仍需进行详细研究。基因组测序方法使得在许多产毒真菌物种中鉴定出了赭曲霉毒素A(OTA)的生物合成基因簇。赭曲霉毒素A是一种由某些物种产生的强效五酮类肾毒素,在食品、饮料和饲料中广泛存在。JGI真菌宇宙数据库和/或GenBank数据库中OTA产毒物种的多个新基因组序列的日益增多,促使我们对19个和2个OTA产毒物种的基因簇结构进行分析和更新,结果发现这些物种中OTA核心基因的组织方式高度保守。此外,我们的比较基因组分析表明,在所分析的所有物种的基因簇中,在聚酮合酶基因和非核糖体合成酶基因之间存在一个先前未描述的额外基因。该基因序列中存在SnoaL环化酶结构域,这支持了其在OTA生物合成途径初始步骤中聚酮环化反应中的假定作用。系统发育分析表明,OTA的SnoaL结构域在物种和分类水平上与OTA产毒物种的系统发育一致聚类。本文首次报道了这个新的OTA基因的特征、其假定作用及其在三个重要代表性产毒物种中的表达证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1216/7775548/d9755160c8eb/fmicb-11-581309-g001.jpg

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