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Integration of transcriptomic and proteomic approaches unveils the molecular mechanism of membrane disintegration in Escherichia coli O157∶H7 with ultrasonic treatment

机译:转录组和蛋白质组学方法的整合推出了超声处理大肠杆菌O157:H7中膜崩解的分子机制

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摘要

Ultrasonic disinfection in wastewater treatment has been studied for years at the phenotypic level, while the understanding of the molecular inactivation mechanism is still not clear. Here, the responses of Escherichia coli O157∶H7 to ultrasound treatment were investigated using RNA sequencing (RNA-Seq) and tandem mass tags (TMT) based quantitative proteomics methods. The analyses revealed that 770 genes and 201 proteins were significantly changed upon ultrasound treatment. Moreover, the integrated transcriptomic and proteomic analyses uncovered a set of 59 genes or proteins were differentially expressed in ultrasound-treated cells, providing an overview of the cellular responses to ultrasonic field. According to the bioinformatic analyses, genes and proteins that may be involved in lipid asymmetry preservation and outer membrane homeostasis maintenance (including phospholipid metabolism, lipopolysaccharide biosynthesis and transport, and fatty acid metabolism) were specifically up-regulated. Therefore, we proposed that the metabolism disorder of cellular membrane lipids (lipopolysaccharide, phospholipid, and fatty acid included) was one of the main challenges for the bacteria upon ultrasonic stress. In this study, we initially proposed a novel mechanism regarding the ultrasound-induced membrane disintegration from a multi-omics perspective, which may present an important step toward deciphering the molecular inactivation mechanism of ultrasonic field and provide a theoretical foundation for the application of ultrasound technology for the control of waterborne pathogens.
机译:废水处理中的超声波消毒已经在表型水平上进行了多年,而对分子失活机制的理解仍未清楚。这里,使用RNA测序(RNA-SEQ)和串联质量标签(TMT)的定量蛋白质组学方法研究了大肠杆菌O157 -:H7至超声处理的反应。分析显示,在超声处理时770个基因和201蛋白显着改变。此外,集成的转录组和蛋白质组学分析在超声处理的细胞中发现了一组59个基因或蛋白质差异表达,概述了对超声波场的细胞反应。根据生物信息化分析,特别是上调可参与脂质不对称保存和外膜稳态,包括磷脂代谢,脂多糖生物合成和运输以及脂肪酸代谢的蛋白质。因此,我们提出了细胞膜脂质(脂多糖,磷脂和脂肪酸所含脂肪酸的代谢障碍是细菌在超声波应力时的主要挑战之一。在该研究中,我们最初提出了一种关于来自多OMICS角度的超声诱导膜崩解的新机制,这可能在超声波磁场中解密分子灭活机制并为应用超声技术提供理论基础的重要阶段用于控制水性病原体。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|148366.1-148366.13|共13页
  • 作者单位

    College of Biosystems Engineering and Food Science National-Local Joint Engineering Laboratory of Intelligent Food Technology and Equipment Zhejiang Key Laboratory for Agro-Food Processing Integrated Research Base of Southern Fruit and Vegetable Preservation Technology Zhejiang International Scientific and Technological Cooperation Base of Health Food Manufacturing and Quality Control Fuli Institute of Food Science Zhejiang University Hangzhou 310058 China;

    U.S. Department of Agriculture Agricultural Research Service Eastern Regional Research Center 600 East Mermaid Lane Wyndmoor PA 19038 USA;

    College of Biosystems Engineering and Food Science National-Local Joint Engineering Laboratory of Intelligent Food Technology and Equipment Zhejiang Key Laboratory for Agro-Food Processing Integrated Research Base of Southern Fruit and Vegetable Preservation Technology Zhejiang International Scientific and Technological Cooperation Base of Health Food Manufacturing and Quality Control Fuli Institute of Food Science Zhejiang University Hangzhou 310058 China Ningbo Research Institute Zhejiang University Ningbo 315100 China;

    College of Biosystems Engineering and Food Science National-Local Joint Engineering Laboratory of Intelligent Food Technology and Equipment Zhejiang Key Laboratory for Agro-Food Processing Integrated Research Base of Southern Fruit and Vegetable Preservation Technology Zhejiang International Scientific and Technological Cooperation Base of Health Food Manufacturing and Quality Control Fuli Institute of Food Science Zhejiang University Hangzhou 310058 China Ningbo Research Institute Zhejiang University Ningbo 315100 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Integrated multi-omics analysis; Cell membrane; Lipid metabolism homeostasis; Ultrasonic inactivation; E.coli O157∶H7;

    机译:集成多OMICS分析;细胞膜;脂质代谢稳态;超声波失活;e.coli o157:h7;

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