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从韩国一起食源性肉毒中毒病例中分离出的产双毒素菌株:基因组和功能见解

Dual-Toxin-Producing Strain Isolated from a Foodborne Botulism Case in Korea: Genomic and Functional Insights.

作者信息

Choi Eun-Sun, Choi Chi-Hwan, Jeon Jun-Ho, Kim So-Hyeon, Song Hyun-Ju, Yi Hwajung, Rhie Gi-Eun, Chung Yoon-Seok

机构信息

Division of High-Risk Pathogens, Department of Laboratory Diagnosis and Analysis, Korea Disease Control and Prevention Agency, KDCA, Cheongju 28159, Republic of Korea.

Division of Laboratory Diagnosis and Analysis, Chungcheong Regional Center for Disease Control and Prevention, Korea Disease Control and Prevention Agency, KDCA, Daejeon 35208, Republic of Korea.

出版信息

Toxins (Basel). 2025 Jun 12;17(6):299. doi: 10.3390/toxins17060299.

Abstract

produces one of the most potent biological toxins and causes botulism, a rare but potentially fatal neuroparalytic disease. In 2014, a foodborne botulism case was reported in Korea, and a strain (CB-2014001) was isolated. Initial characterization identified it as a BoNT/B-producing strain based on mouse bioassay and conventional PCR. However, subsequent genomic analysis revealed the presence of dual BoNT gene clusters, bont/B and bont/F, corresponding to subtypes B5 and F2, respectively. Therefore, we aimed to analyze the genetic characteristics and toxin expression profiles of the isolated strain. The strain showed high sequence identity with Bf-type strains such as CDC 3281 and An436. Functional assays confirmed simultaneous expression of both BoNT/B and /F toxins at 35 °C, and temperature-dependent assays revealed predominant expression of BoNT/F at 30 °C and BoNT/B at 37 °C, indicating that toxin expression is influenced by environmental temperature. These findings highlight the potential for differential pathogenicity based on culture conditions and underscore the importance of developing diagnostic tools capable of detecting multiple genes. To our knowledge, this is the first report of a dual-toxin-producing strain associated with foodborne botulism in Korea, providing important insights into botulism diagnosis, treatment strategies, and public health preparedness.

摘要

它能产生一种毒性极强的生物毒素,并导致肉毒中毒,这是一种罕见但可能致命的神经麻痹性疾病。2014年,韩国报告了一起食源性肉毒中毒病例,并分离出一株菌株(CB - 2014001)。初步鉴定基于小鼠生物测定和常规PCR将其确定为产BoNT/B的菌株。然而,随后的基因组分析显示存在双重BoNT基因簇,即bont/B和bont/F,分别对应B5和F2亚型。因此,我们旨在分析分离菌株的遗传特征和毒素表达谱。该菌株与CDC 3281和An436等Bf型菌株具有高度的序列同一性。功能测定证实,在35℃时BoNT/B和/F毒素同时表达,温度依赖性测定显示在30℃时BoNT/F占主导表达,在37℃时BoNT/B占主导表达,表明毒素表达受环境温度影响。这些发现突出了基于培养条件的致病性差异潜力,并强调了开发能够检测多个基因的诊断工具的重要性。据我们所知,这是韩国首例与食源性肉毒中毒相关的双毒素产生菌株的报告,为肉毒中毒的诊断、治疗策略和公共卫生防范提供了重要见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a58/12197393/3b98d4f7272c/toxins-17-00299-g001.jpg

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