Literature DB >> 17440912

Bacterial exopolysaccharides--a perception.

Anita Suresh Kumar1, Kalpana Mody, Bhavanath Jha.   

Abstract

Microbial polysaccharides are multifunctional and can be divided into intracellular polysaccharides, structural polysaccharides and extracellular polysaccharides or exopolysaccharides (EPS). Extracellular polymeric substances (EPS), produced by both prokaryotes (eubacteria and archaebacteria) and eukaryotes (phytoplankton, fungi, and algae), have been of topical research interest. Newer approaches are carried out today to replace the traditionally used plant gums by their bacterial counterparts. The bacterial exopolysaccharides represent a wide range of chemical structures, but have not yet acquired appreciable significance. Chemically, EPS are rich in high molecular weight polysaccharides (10 to 30 kDa) and have heteropolymeric composition. They have new-fangled applications due to the unique properties they possess. Owing to this, exopolysaccharides have found multifarious applications in the food, pharmaceutical and other industries. Hence, the present article converges on bacterial exopolysaccharides.

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Year:  2007        PMID: 17440912     DOI: 10.1002/jobm.200610203

Source DB:  PubMed          Journal:  J Basic Microbiol        ISSN: 0233-111X            Impact factor:   2.281


  87 in total

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Journal:  Food Sci Nutr       Date:  2018-09-12       Impact factor: 2.863

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3.  Genes encoding the production of extracellular polysaccharide bioflocculant are clustered on a 30-kb DNA segment in Bacillus licheniformis.

Authors:  Shan Yan; Na Wang; Zhen Chen; Yuanpeng Wang; Ning He; Yajuan Peng; Qingbiao Li; Xu Deng
Journal:  Funct Integr Genomics       Date:  2013-08-30       Impact factor: 3.410

4.  Stable-Isotope Probing Identifies Uncultured Planctomycetes as Primary Degraders of a Complex Heteropolysaccharide in Soil.

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Journal:  Appl Environ Microbiol       Date:  2015-05-01       Impact factor: 4.792

5.  Production and Biotechnological Potential of Extracellular Polymeric Substances from Sponge-Associated Antarctic Bacteria.

Authors:  Consolazione Caruso; Carmen Rizzo; Santina Mangano; Annarita Poli; Paola Di Donato; Ilaria Finore; Barbara Nicolaus; Gaetano Di Marco; Luigi Michaud; Angelina Lo Giudice
Journal:  Appl Environ Microbiol       Date:  2018-01-31       Impact factor: 4.792

6.  Optimization of Carbon and Nitrogen Sources for Extracellular Polymeric Substances Production by Chryseobacterium indologenes MUT.2.

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Journal:  Iran J Biotechnol       Date:  2016-06       Impact factor: 1.671

7.  In Vitro Antibiofilm Activity of an Exopolysaccharide from the Marine Thermophilic Bacillus licheniformis T14.

Authors:  Antonio Spanò; Pasqualina Laganà; Giuseppa Visalli; Teresa L Maugeri; Concetta Gugliandolo
Journal:  Curr Microbiol       Date:  2016-01-11       Impact factor: 2.188

8.  Effects of light intensity on components and topographical structures of extracellular polysaccharides from the cyanobacteria Nostoc sp.

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Journal:  J Microbiol       Date:  2014-02-01       Impact factor: 3.422

9.  Exopolysaccharide from Pantoea sp. BCCS 001 GH isolated from nectarine fruit: production in submerged culture and preliminary physicochemical characterizations.

Authors:  Seyyed Vahid Niknezhad; Mohammad Hossein Morowvat; Ghasem Najafpour Darzi; Aida Iraji; Younes Ghasemi
Journal:  Food Sci Biotechnol       Date:  2018-06-12       Impact factor: 2.391

10.  Impact of Preservation Conditions on Fatty Acids, Xanthan Gum Production and Other Characteristics of Xanthomonas campestris pv. mangiferaeindicae IBSBF 2103.

Authors:  Graciete S Silva; Denilson J Assis; Janice I Druzian; Maria B P P Oliveira; Paulo L L Ribeiro; Soraia M Cordeiro; Cleber A Schmidt
Journal:  Indian J Microbiol       Date:  2017-08-14       Impact factor: 2.461

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