Integrative genome analysis of bacteriocin-producing Lactiplantibacillus pentosus LNP1-39 and its synbiotic role in suppressing food-borne pathogens.

IF 3.1 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Thanadol Jirakanjanasit, Natladda Choovet, Auttaporn Booncharoen, Engkarat Kingkaew, Saranporn Poothong, Somboon Tanasupawat, Sukanya Phuengjayaem
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引用次数: 0

Abstract

Lactic acid bacteria were isolated from traditional Thai-fermented foods. Among these, the strain LNP1-39, closely related to Lactiplantibacillus pentosus, was selected for further study because of its non-pathogenic profile. The bacteriocins produced by L. pentosus LNP1-39 were proteinaceous substances that exhibited strong antimicrobial activity across a wide pH range (pH 2-11; 6400-2400 AU/mL) and thermal stability at 100 °C for 40 min (400 AU/mL). These bacteriocins showed a narrow antimicrobial spectrum, effectively targeting Gram-positive pathogens, such as Kocuria rhizophila MIII, Enterococcus faecalis JCM 5803 T, and Listeria monocytogenes ATCC 19115. Comprehensive safety assessments, including whole-genome analysis and in vitro tests, confirmed a low risk of antibiotic resistance and the absence of virulence factors. Strain LNP1-39 was confirmed to be closely related to L. pentosus DSM 20314 T via digital DNA‒DNA hybridization (dDDH; 75.4%), with average nucleotide identity (ANI) at 96.56% ANIb and 97.22% ANIm values. Additionally, LNP1-39 produces pediocin with notable similarity (76.29% identity to pediocin) and presents low risks for antibiotic-resistance genes or transfer genes while providing antioxidant properties. Strain LNP1-39 survived harsh gastrointestinal tract conditions and exhibited a favorable prebiotic index and positive prebiotic activity score when paired with polydextrose or isomalto-oligosaccharide. These findings support L. pentosus LNP1-39 as potential bacteriocin-producing lactic acid bacteria for further application in food preservation and pathogen control or as a synbiotic.

产生细菌素的乳酸杆菌LNP1-39的整合基因组分析及其在抑制食源性病原体中的合成作用。
从泰国传统发酵食品中分离到乳酸菌。其中,LNP1-39菌株因其无致病性而被选择作为进一步研究的对象,该菌株与pentosus乳酸菌有密切的亲缘关系。L. pentosus LNP1-39产生的细菌素是一种蛋白质物质,在较宽的pH范围内(pH 2-11;6400-2400 AU/mL),在100°C下热稳定性为40 min (400 AU/mL)。这些细菌素显示出狭窄的抗菌谱,有效靶向革兰氏阳性病原体,如嗜根kcuria MIII、粪肠球菌JCM 5803t和单核增生李斯特菌ATCC 19115。包括全基因组分析和体外试验在内的综合安全性评估证实,抗生素耐药风险较低,且不存在毒力因素。菌株LNP1-39通过数字DNA-DNA杂交(dDDH;75.4%),平均核苷酸同源性(ANI)为ANIb值的96.56%和ANIm值的97.22%。此外,LNP1-39产生的pediocin具有显著的相似性(与pediocin的同源性为76.29%),在提供抗氧化特性的同时,具有较低的耐药基因或转移基因风险。菌株LNP1-39在严酷的胃肠道条件下存活,当与聚葡萄糖或异麦芽糖寡糖配对时,表现出良好的益生元指数和积极的益生元活性评分。这些研究结果支持L. pentosus LNP1-39作为一种潜在的产菌素乳酸菌,在食品保鲜和病原菌防治中有进一步的应用前景。
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来源期刊
Folia microbiologica
Folia microbiologica 工程技术-生物工程与应用微生物
CiteScore
5.80
自引率
0.00%
发文量
82
审稿时长
6-12 weeks
期刊介绍: Unlike journals which specialize ever more narrowly, Folia Microbiologica (FM) takes an open approach that spans general, soil, medical and industrial microbiology, plus some branches of immunology. This English-language journal publishes original papers, reviews and mini-reviews, short communications and book reviews. The coverage includes cutting-edge methods and promising new topics, as well as studies using established methods that exhibit promise in practical applications such as medicine, animal husbandry and more. The coverage of FM is expanding beyond Central and Eastern Europe, with a growing proportion of its contents contributed by international authors.
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