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通过表型和基因组分析对来自食物和海洋来源物种的抗菌化合物的新见解

New Insight into Antimicrobial Compounds from Food and Marine-Sourced Species through Phenotype and Genome Analyses.

作者信息

Begrem Simon, Ivaniuk Flora, Gigout-Chevalier Frédérique, Kolypczuk Laetitia, Bonnetot Sandrine, Leroi Françoise, Grovel Olivier, Delbarre-Ladrat Christine, Passerini Delphine

机构信息

University of Nantes, 44035 Nantes CEDEX 1, France.

IFREMER, BRM, EM3B Laboratory, 44300 Nantes CEDEX 3, France.

出版信息

Microorganisms. 2020 Jul 21;8(7):1093. doi: 10.3390/microorganisms8071093.

Abstract

and , isolated from food products, are lactic acid bacteria known to produce active and efficient bacteriocins. Other species, particularly those originating from marine sources, are less studied. The aim of the study is to select promising strains with antimicrobial potential by combining genomic and phenotypic approaches on large datasets comprising 12 species. The biosynthetic gene cluster (BGCs) diversity of 39 publicly available spp. genomes revealed 67 BGCs, distributed according to the species and ecological niches. From zero to six BGCs were predicted per strain and classified into four classes: terpene, NRPS (non-ribosomal peptide synthetase), NRPS-PKS (hybrid non-ribosomal peptide synthetase-polyketide synthase), RiPP (ribosomally synthesized and post-translationally modified peptide). In parallel, the antimicrobial activity of 260 strains from seafood products was evaluated. Among the 60% of active strains, three genomes were sequenced and submitted to a dereplication process. MIP2551 produced a high amountof HO, probably thanks to the presence of four oxidase-encoding genes. EBP3019 and SF668 strains were highly efficient against . A new extracellular 16 kDa unmodified bacteriocin in the EBP3019 strain and five different bacteriocins in SF668 were highlighted. In this study, the overview of antimicrobial BGC and inhibitory activities of spp. allowed the prediction of potential innovative natural products that could be relevant for biotechnological applications.

摘要

从食品中分离出的[具体菌种]是已知能产生活性高效细菌素的乳酸菌。其他菌种,尤其是那些源自海洋的菌种,研究较少。本研究的目的是通过对包含12个物种的大型数据集采用基因组学和表型学方法,筛选出具有抗菌潜力的有前景菌株。39个公开可用的[具体菌种]基因组的生物合成基因簇(BGCs)多样性揭示了67个BGCs,根据物种和生态位分布。每个菌株预测有0至6个BGCs,并分为四类:萜类、非核糖体肽合成酶(NRPS)、NRPS - 聚酮合酶(PKS)杂合体、核糖体合成及翻译后修饰肽(RiPP)。同时,评估了260株海产品菌株的抗菌活性。在60%的活性菌株中,对三个基因组进行了测序并进行了去重复分析。MIP2551可能由于存在四个氧化酶编码基因而产生大量的HO。EBP3019和SF668菌株对[具体菌种]具有高效抗菌活性。EBP3019菌株中发现了一种新的16 kDa未修饰细胞外细菌素,SF668中发现了五种不同的细菌素。在本研究中,对[具体菌种]抗菌BGC和抑制活性的概述有助于预测可能与生物技术应用相关的潜在创新天然产物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b762/7409045/adf9c51e2e87/microorganisms-08-01093-g001.jpg

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