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胆汁酸和乳酸链球菌素对在营养丰富培养基中产生肠毒素的影响。

Effects of Bile Acids and Nisin on the Production of Enterotoxin by in a Nutrient-Rich Medium.

作者信息

Park Miseon, Rafii Fatemeh

机构信息

Division of Microbiology, National Center for Toxicological Research, U.S. Food and Drug Administration, Jefferson, AR 72079, USA.

出版信息

Int J Microbiol. 2018 Feb 20;2018:7276523. doi: 10.1155/2018/7276523. eCollection 2018.

Abstract

is the second most common cause of bacterial foodborne illness in the United States, with nearly a million cases each year. enterotoxin (CPE), produced during sporulation, damages intestinal epithelial cells by pore formation, which results in watery diarrhea. The effects of low concentrations of nisin and bile acids on sporulation and toxin production were investigated in SM101, which carries an enterotoxin gene on the chromosome, in a nutrient-rich medium. Bile acids and nisin increased production of enterotoxin in cultures; bile acids had the highest effect. Both compounds stimulated the transcription of enterotoxin and sporulation-related genes and production of spores during the early growth phase. They also delayed spore outgrowth and nisin was more inhibitory. Bile acids and nisin enhanced enterotoxin production in some but not all other isolates tested. Low concentrations of bile acids and nisin may act as a stress signal for the initiation of sporulation and the early transcription of sporulation-related genes in some strains of , which may result in increased strain-specific production of enterotoxin in those strains. This is the first report showing that nisin and bile acids stimulated the transcription of enterotoxin and sporulation-related genes in a nutrient-rich bacterial culture medium.

摘要

在美国,它是细菌性食源性疾病的第二大常见病因,每年有近百万病例。芽孢形成过程中产生的肠毒素(CPE)通过形成孔道损害肠道上皮细胞,导致水样腹泻。在富含营养的培养基中,研究了低浓度的乳酸链球菌素和胆汁酸对携带染色体上肠毒素基因的SM101芽孢形成和毒素产生的影响。胆汁酸和乳酸链球菌素增加了培养物中肠毒素的产生;胆汁酸的作用最为显著。这两种化合物在生长早期阶段刺激了肠毒素和芽孢形成相关基因的转录以及孢子的产生。它们还延迟了孢子萌发,乳酸链球菌素的抑制作用更强。胆汁酸和乳酸链球菌素在一些但并非所有测试的其他分离株中增强了肠毒素的产生。低浓度的胆汁酸和乳酸链球菌素可能作为一种应激信号,引发某些菌株的芽孢形成和芽孢形成相关基因的早期转录,这可能导致这些菌株中肠毒素的菌株特异性产生增加。这是第一份表明乳酸链球菌素和胆汁酸在富含营养的细菌培养基中刺激肠毒素和芽孢形成相关基因转录的报告。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d17c/5838459/cd8ecc18be23/IJMICRO2018-7276523.001.jpg

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