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通过干扰竞争网络和基因组分析挖掘[具体物种或环境等,原文未明确]中的生物合成基因簇

Mining Biosynthetic Gene Clusters in by Interference Competition Network and Genome Analysis.

作者信息

Gontijo Marco Túlio Pardini, Ramia Nancy E, Dijamentiuk Alexis, Elfassy Annelore, Taha Samir, Mangavel Cécile, Revol-Junelles Anne-Marie, Borges Frédéric

机构信息

Université de Lorraine, LIBio, F-54000 Nancy, France.

Instituto de Biologia, Universidade Estadual de Campinas, 255, Rua Monteiro Lobato, Campinas 13083-862, Brazil.

出版信息

Microorganisms. 2022 Sep 6;10(9):1794. doi: 10.3390/microorganisms10091794.

Abstract

is a non-starter lactic acid bacterium (LAB) of interest in the dairy industry for biopreservation. This study investigated the interference competition network and the specialized metabolites biosynthetic gene clusters (BGCs) content in this LAB in order to explore the relationship between the antimicrobial properties and the genome content. Network analysis revealed that the potency of inhibition tended to increase when the inhibition spectrum broadened, but also that several strains exhibited a high potency and narrow spectrum of inhibition. The strains with potent anti- were characterized by high potency and a wide intraspecific spectrum. Genome mining of 29 strains revealed the presence of 12 bacteriocin BGCs: four of class I and eight of class II, among which seven belong to class IIa and one to class IIc. Overall, eight bacteriocins and one nonribosomal peptide synthetase and polyketide synthase (NRPS-PKS) BGCs were newly described. The comparison of the antimicrobial properties resulting from the analysis of the network and the BGC genome content allowed us to delineate candidate BGCs responsible for anti- and anti- activity. However, it also highlighted that genome analysis is not suitable in the current state of the databases for the prediction of genes involved in the antimicrobial activity of strains with a narrow anti- activity.

摘要

是乳制品行业中用于生物保鲜的一种未被充分利用的乳酸菌。本研究调查了这种乳酸菌中的干扰竞争网络和特殊代谢物生物合成基因簇(BGCs)含量,以探索抗菌特性与基因组含量之间的关系。网络分析表明,抑制谱拓宽时抑制效力往往会增加,但也有几个菌株表现出高效力和窄抑制谱。具有高效抗[菌]能力的菌株的特征是高效力和宽种内谱。对29个菌株的基因组挖掘揭示了12个细菌素BGCs的存在:4个I类和8个II类,其中7个属于IIa类,1个属于IIc类。总体而言,新描述了8种细菌素以及1个非核糖体肽合成酶和聚酮合酶(NRPS-PKS)BGCs。通过对网络分析和BGC基因组含量分析得出的抗菌特性进行比较,使我们能够确定负责抗[菌]和抗[菌]活性的候选BGCs。然而,这也突出表明,在当前数据库状态下,基因组分析不适用于预测具有窄抗[菌]活性的菌株中参与抗菌活性的基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77d1/9504619/23d0bb0cff36/microorganisms-10-01794-g001.jpg

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