Comprehensive molecular, probiotic, and quorum-sensing characterization of anti-listerial lactic acid bacteria, and application as bioprotective in a food (milk) model

单核细胞增生李斯特菌 樱乳杆菌 益生菌 植物乳杆菌 卡那霉素 细菌 生物 食品科学 李斯特菌 微生物学 化学 群体感应 乳酸 群体猝灭 乳酸菌 毒力 细菌素 抗菌剂 抗生素 生物化学 基因 发酵 遗传学
作者
Md. Iqbal Hossain,Kyeongjun Kim,Md. Furkanur Rahaman Mizan,Sazzad Hossen Toushik,Md. Ashrafudoulla,Pantu Kumar Roy,Shamsun Nahar Begum,Iqbal Kabir Jahid,Changsun Choi,Si Hong Park,Sang‐Do Ha
出处
期刊:Journal of Dairy Science [Elsevier BV]
卷期号:104 (6): 6516-6534 被引量:35
标识
DOI:10.3168/jds.2020-19034
摘要

Listeria monocytogenes is a major foodborne pathogen that adversely affects the food industry. In this study, 6 anti-listerial lactic acid bacteria (LAB) isolates were screened. These anti-listerial LAB isolates were identified via 16S rRNA gene sequencing and analyzed via repetitive extragenic palindromic-PCR. Probiotic assessment of these isolates, comprising an evaluation of the antibiotic susceptibility, tolerance to lysozyme, simulated gastric and intestinal juices, and gut conditions (low pH, bile salts, and 0.4% phenol), was carried out. Most of the isolates were resistant to streptomycin, vancomycin, gentamycin, kanamycin, and ciprofloxacin. All of the isolates were negative for virulence genes, including agg, ccf, cylA, cylB, cylLL, cylLS, cylM, esp, and gelE, and hemolytic activity. Furthermore, autoinducer-2 (a quorum-sensing molecule) was detected and quantified via HPLC with fluorescence detection after derivatization with 2,3-diaminonaphthalene. Metabolites profiles of the Lactobacillus sakei D.7 and Lactobacillus plantarum I.60 were observed and presented various organic acids linked with antibacterial activity. Moreover, freeze-dried cell-free supernatants from Lb. sakei (55 mg/mL) and Lb. plantarum (40 mg/mL) showed different minimum effective concentration (MEC) against L. monocytogenes in the food model (whole milk). In summary, these anti-listerial LAB isolates do not pose a risk to consumer health, are eco-friendly, and may be promising candidates for future use as bioprotective cultures and new probiotics to control contamination by L. monocytogenes in the food and dairy industries.
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