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基于全基因组的计算机模拟分析对从猪中分离出的乳链菌肽S产生菌P1CEA3的安全性和益生菌特性进行评估

Evaluation of Safety and Probiotic Traits from a Comprehensive Genome-Based In Silico Analysis of P1CEA3, Isolated from Pigs and Producer of Nisin S.

作者信息

Sevillano Ester, Lafuente Irene, Peña Nuria, Cintas Luis M, Muñoz-Atienza Estefanía, Hernández Pablo E, Borrero Juan

机构信息

Departamento de Nutrición y Ciencia de los Alimentos (NUTRYCIAL), Sección Departamental de Nutrición y Ciencia de los Alimentos (SD-NUTRYCIAL), Facultad de Veterinaria, Universidad Complutense de Madrid (UCM), Avenida Puerta de Hierro, s/n, 28040 Madrid, Spain.

出版信息

Foods. 2023 Dec 28;13(1):107. doi: 10.3390/foods13010107.

Abstract

is an important member of the porcine gastrointestinal tract (GIT). Some strains are considered to have a beneficial effect on the host by exerting different probiotic properties, including the production of antimicrobial peptides which help maintain a healthy gut microbiota. P1CEA3, a porcine isolated strain, was first selected and identified by its antimicrobial activity against a broad range of pathogenic bacteria due to the production of the novel bacteriocin nisin S. The assembled P1CEA3 genome includes a circular chromosome, a megaplasmid (pMP1CEA3) encoding the nisin S gene cluster, and two small plasmids. A comprehensive genome-based in silico analysis of the P1CEA3 genome reveals the presence of genes related to probiotic features such as bacteriocin synthesis, regulation and production, adhesion and aggregation, the production of lactic acid, amino acids metabolism, vitamin biosynthesis, and tolerance to temperature, acid, bile salts and osmotic and oxidative stress. Furthermore, the strain is absent of risk-related genes for acquired antibiotic resistance traits, virulence factors, toxic metabolites and detrimental metabolic or enzymatic activities. Resistance to common antibiotics and gelatinase and hemolytic activities have been discarded by in vitro experiments. This study identifies several probiotic and safety traits of P1CEA3 and suggests its potential as a promising probiotic in swine production.

摘要

是猪胃肠道(GIT)的重要成员。一些菌株被认为通过发挥不同的益生菌特性对宿主具有有益作用,包括产生有助于维持健康肠道微生物群的抗菌肽。猪分离株P1CEA3首先因其产生新型细菌素乳酸链球菌素S对多种病原菌具有抗菌活性而被筛选和鉴定。组装的P1CEA3基因组包括一条环状染色体、一个编码乳酸链球菌素S基因簇的大质粒(pMP1CEA3)和两个小质粒。基于基因组的P1CEA3基因组综合计算机分析揭示了与益生菌特性相关的基因的存在,如细菌素的合成、调控和产生、黏附与聚集、乳酸产生、氨基酸代谢、维生素生物合成以及对温度、酸、胆盐、渗透压和氧化应激的耐受性。此外,该菌株不存在与获得性抗生素耐药性状、毒力因子、有毒代谢产物以及有害代谢或酶活性相关的风险基因。体外实验已排除了对常见抗生素的耐药性以及明胶酶和溶血活性。本研究确定了P1CEA3的几种益生菌和安全特性,并表明其在猪生产中作为有前景的益生菌的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32b8/10778751/ae52c95d9b88/foods-13-00107-g001.jpg

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