• 中国科技期刊卓越行动计划项目资助期刊
  • 中国精品科技期刊
  • EI
  • Scopus
  • CAB Abstracts
  • Global Health
  • 北大核心期刊
  • DOAJ
  • EBSCO
  • 中国核心学术期刊RCCSE A+
  • 中国科技核心期刊CSTPCD
  • JST China
  • FSTA
  • 中国农林核心期刊
  • 中国开放获取期刊数据库COAJ
  • CA
  • WJCI
  • 食品科学与工程领域高质量科技期刊分级目录第一方阵T1
中国精品科技期刊2020
马芊芊,吴剑夫,谢春阳,等. 调控因子RpoS在副溶血性弧菌抗环境胁迫中的作用[J]. 食品工业科技,2025,46(23):202−211. doi: 10.13386/j.issn1002-0306.2024110262.
引用本文: 马芊芊,吴剑夫,谢春阳,等. 调控因子RpoS在副溶血性弧菌抗环境胁迫中的作用[J]. 食品工业科技,2025,46(23):202−211. doi: 10.13386/j.issn1002-0306.2024110262.
MA Qianqian, WU Jianfu, XIE Chunyang, et al. Role of the Regulatory Factor RpoS in the Resistance of Vibrio parahaemolyticus to Environmental Stresses[J]. Science and Technology of Food Industry, 2025, 46(23): 202−211. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2024110262.
Citation: MA Qianqian, WU Jianfu, XIE Chunyang, et al. Role of the Regulatory Factor RpoS in the Resistance of Vibrio parahaemolyticus to Environmental Stresses[J]. Science and Technology of Food Industry, 2025, 46(23): 202−211. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2024110262.

调控因子RpoS在副溶血性弧菌抗环境胁迫中的作用

Role of the Regulatory Factor RpoS in the Resistance of Vibrio parahaemolyticus to Environmental Stresses

  • 摘要: 副溶血性弧菌(Vibrio parahaemolyticus)是一种食源性条件致病菌,在水产品中广泛存在。副溶血性弧菌的爆发会引发严重的食品安全问题,出现食物中毒的现象。为了进一步探究调控因子RpoS是否在副溶血性弧菌的耐环境胁迫中发挥关键作用,本实验通过同源重组技术构建了rpoS基因缺失菌株ATCC33846/ΔrpoSrpoS基因回补菌株ΔrpoS/pBAD33T-rpoS。结果表明,在不同温度、NaCl浓度、寡营养和pH条件下,ATCC33846/ΔrpoS生长受到明显抑制,泳动性和生物膜形成能力降低。扫描电镜观察ATCC33846/ΔrpoS细胞膜表面形态发生变化,出现明显的褶皱。傅里叶红外光谱(FTIR)分析发现,ATCC33846/ΔrpoS中氢键减弱,细胞膜脂质受到不良影响,胞外分泌物组分中多糖类物质减少。在诺氟沙星、多粘菌素B、恩诺沙星、氯霉素、利福平条件下,ATCC33846/ΔrpoS的耐药性随药物浓度的增加显著降低。这些结果表明,RpoS是副溶血性弧菌抵御外界环境胁迫的关键调控因子。

     

    Abstract: Vibrio parahaemolyticus is a foodborne pathogen found widely in aquatic products, the infectious outbreaks of which are often associated with serious food safety issues, including food poisoning. In order to determine whether the regulatory factor RpoS played a key role in the resistance of V. parahaemolyticus to environmental stresses, homologous recombination technology was used to generate rpoS gene deletion strain ATCC33846/ΔrpoS and rpoS gene backfill strain ΔrpoS/pBAD33T-rpoS in this study. The results revealed that the growth of ATCC33846/ΔrpoS was significantly inhibited in response to exposure to different temperature, NaCl concentration, oligotrophic, and pH conditions, and that there were reductions in the mobility and biofilm formation capacity of this strain. Scanning electron microscopy revealed alterations in the surface morphology of ATCC33846/ΔrpoS cell membranes, characterized by the presence of obvious folds. In addition, Fourier transform infrared spectroscopy analysis indicated a weakening of the hydrogen bonds of ATCC33846/ΔrpoS, thereby influencing the lipid content of cell membranes, and causing reductions in the extracellular secretion of polysaccharides. Moreover, in response to treatment with norfloxacin, polymyxin B, enrofloxacin, chloramphenicol, and rifampicin, significant concentration-dependent reductions in the antibiotic resistance of ATCC33846/ΔrpoS were detected. These findings provide evidence to indicate that RpoS is a key regulator of the resistance of V. parahaemolyticus to external environmental stress.

     

/

返回文章
返回