Research Progress on Regulation of Bacterial Exopolysaccharide Biosynthesis by Cyclic Diguanylate

Bacterial exopolysaccharide (EPS) is a secondary metabolite that is synthesized and secreted outside the cell wall during bacterial growth and metabolism. It can regulate the initial attachment of cells to different substrates and protect cells against environmental stress and dehydration. As a pote...

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Main Authors: Liansheng YU, Jingping GE, Wenxiang PING, Renpeng DU
Format: Article
Language:zho
Published: The editorial department of Science and Technology of Food Industry 2023-05-01
Series:Shipin gongye ke-ji
Subjects:
Online Access:http://www.spgykj.com/cn/article/doi/10.13386/j.issn1002-0306.2022060142
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author Liansheng YU
Jingping GE
Wenxiang PING
Renpeng DU
author_facet Liansheng YU
Jingping GE
Wenxiang PING
Renpeng DU
author_sort Liansheng YU
collection DOAJ
description Bacterial exopolysaccharide (EPS) is a secondary metabolite that is synthesized and secreted outside the cell wall during bacterial growth and metabolism. It can regulate the initial attachment of cells to different substrates and protect cells against environmental stress and dehydration. As a potential prebiotic, EPS has the characteristics of safety, non-toxicity and unique physical and chemical properties, and is widely used in the fields of food, medicine, biology and industry. However, the bacterial metabolic system is complex, and the biosynthetic mechanism of EPS has not been fully elucidated. Cyclic diguanylate (c-di-GMP) is an important second messenger, and it plays an important role in the regulation of many physiological activities such as biofilm formation, motility, adhesion, virulence and EPS synthesis. The analysis of the transcriptional regulation mechanism of c-di-GMP provides a new idea for exploring the biosynthesis mechanism of bacterial EPS. This paper summarizes the characteristics and synthetic degradation pathways of c-di-GMP in detail, and focuses on the regulatory mechanism of c-di-GMP in the process of bacterial EPS biosynthesis. This paper provides a theoretical basis for revealing the mechanism of bacterial EPS biosynthesis and the structure-activity relationship.
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spelling doaj.art-6d903073ece544d48f7ec65b16d134512023-08-24T06:01:47ZzhoThe editorial department of Science and Technology of Food IndustryShipin gongye ke-ji1002-03062023-05-0144942243010.13386/j.issn1002-0306.20220601422022060142-9Research Progress on Regulation of Bacterial Exopolysaccharide Biosynthesis by Cyclic DiguanylateLiansheng YU0Jingping GE1Wenxiang PING2Renpeng DU3School of Life Sciences, Heilongjiang University, Engineering Research Center of Agricultural Microbiology Technology, Ministry of Education, Heilongjiang Provincial Key Laboratory of Plant Genetic Engineering and Biological Fermentation Engineering for Cold Region, Key Laboratory of Microbiology, College of Heilongjiang Province, Harbin 150080, ChinaSchool of Life Sciences, Heilongjiang University, Engineering Research Center of Agricultural Microbiology Technology, Ministry of Education, Heilongjiang Provincial Key Laboratory of Plant Genetic Engineering and Biological Fermentation Engineering for Cold Region, Key Laboratory of Microbiology, College of Heilongjiang Province, Harbin 150080, ChinaSchool of Life Sciences, Heilongjiang University, Engineering Research Center of Agricultural Microbiology Technology, Ministry of Education, Heilongjiang Provincial Key Laboratory of Plant Genetic Engineering and Biological Fermentation Engineering for Cold Region, Key Laboratory of Microbiology, College of Heilongjiang Province, Harbin 150080, ChinaSchool of Life Sciences, Heilongjiang University, Engineering Research Center of Agricultural Microbiology Technology, Ministry of Education, Heilongjiang Provincial Key Laboratory of Plant Genetic Engineering and Biological Fermentation Engineering for Cold Region, Key Laboratory of Microbiology, College of Heilongjiang Province, Harbin 150080, ChinaBacterial exopolysaccharide (EPS) is a secondary metabolite that is synthesized and secreted outside the cell wall during bacterial growth and metabolism. It can regulate the initial attachment of cells to different substrates and protect cells against environmental stress and dehydration. As a potential prebiotic, EPS has the characteristics of safety, non-toxicity and unique physical and chemical properties, and is widely used in the fields of food, medicine, biology and industry. However, the bacterial metabolic system is complex, and the biosynthetic mechanism of EPS has not been fully elucidated. Cyclic diguanylate (c-di-GMP) is an important second messenger, and it plays an important role in the regulation of many physiological activities such as biofilm formation, motility, adhesion, virulence and EPS synthesis. The analysis of the transcriptional regulation mechanism of c-di-GMP provides a new idea for exploring the biosynthesis mechanism of bacterial EPS. This paper summarizes the characteristics and synthetic degradation pathways of c-di-GMP in detail, and focuses on the regulatory mechanism of c-di-GMP in the process of bacterial EPS biosynthesis. This paper provides a theoretical basis for revealing the mechanism of bacterial EPS biosynthesis and the structure-activity relationship.http://www.spgykj.com/cn/article/doi/10.13386/j.issn1002-0306.2022060142bacteriaexopolysaccharidebiosynthesiscyclic diguanylate
spellingShingle Liansheng YU
Jingping GE
Wenxiang PING
Renpeng DU
Research Progress on Regulation of Bacterial Exopolysaccharide Biosynthesis by Cyclic Diguanylate
Shipin gongye ke-ji
bacteria
exopolysaccharide
biosynthesis
cyclic diguanylate
title Research Progress on Regulation of Bacterial Exopolysaccharide Biosynthesis by Cyclic Diguanylate
title_full Research Progress on Regulation of Bacterial Exopolysaccharide Biosynthesis by Cyclic Diguanylate
title_fullStr Research Progress on Regulation of Bacterial Exopolysaccharide Biosynthesis by Cyclic Diguanylate
title_full_unstemmed Research Progress on Regulation of Bacterial Exopolysaccharide Biosynthesis by Cyclic Diguanylate
title_short Research Progress on Regulation of Bacterial Exopolysaccharide Biosynthesis by Cyclic Diguanylate
title_sort research progress on regulation of bacterial exopolysaccharide biosynthesis by cyclic diguanylate
topic bacteria
exopolysaccharide
biosynthesis
cyclic diguanylate
url http://www.spgykj.com/cn/article/doi/10.13386/j.issn1002-0306.2022060142
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AT jingpingge researchprogressonregulationofbacterialexopolysaccharidebiosynthesisbycyclicdiguanylate
AT wenxiangping researchprogressonregulationofbacterialexopolysaccharidebiosynthesisbycyclicdiguanylate
AT renpengdu researchprogressonregulationofbacterialexopolysaccharidebiosynthesisbycyclicdiguanylate