Literature DB >> 19561191

Evaluation of different methods for extracting extracellular DNA from the biofilm matrix.

Jianfeng Wu1, Chuanwu Xi.   

Abstract

The occurrence of high concentrations of extracellular DNA (eDNA) in the extracellular matrices of biofilms plays an important role in biofilm formation and development and possibly in horizontal gene transfer through natural transformation. Studies have been conducted to characterize the nature of eDNA and its potential function in biofilm development, but it is difficult to extract eDNA from the extracellular matrices of biofilms without any contamination from genomic DNA released by cell lysis during the extraction process. In this report, we compared several different extraction methods in order to obtain highly pure eDNA from different biofilm samples. After different extraction methods were explored, it was concluded that using chemical treatment or enzymatic treatment of biofilm samples may obtain larger amounts of eDNA than using the simple filtration method. There was no detectable cell lysis when the enzymatic treatment methods were used, but substantial cell lysis was observed when the chemical treatment methods were used. These data suggest that eDNA may bind to other extracellular polymers in the biofilm matrix and that enzymatic treatment methods are effective and favorable for extracting eDNA from biofilm samples. Moreover, randomly amplified polymorphic DNA analysis of eDNA in Acinetobacter sp. biofilms and Acinetobacter sp. genomic DNA and DNA sequencing analysis revealed that eDNA originated from genomic DNA but was not structurally identical to the genomic DNA.

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Year:  2009        PMID: 19561191      PMCID: PMC2725481          DOI: 10.1128/AEM.00400-09

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  39 in total

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Journal:  Curr Opin Biotechnol       Date:  2003-06       Impact factor: 9.740

4.  A characterization of DNA release in Pseudomonas aeruginosa cultures and biofilms.

Authors:  Marie Allesen-Holm; Kim Bundvig Barken; Liang Yang; Mikkel Klausen; Jeremy S Webb; Staffan Kjelleberg; Søren Molin; Michael Givskov; Tim Tolker-Nielsen
Journal:  Mol Microbiol       Date:  2006-02       Impact factor: 3.501

Review 5.  Release and persistence of extracellular DNA in the environment.

Authors:  Kaare M Nielsen; Pål J Johnsen; Douda Bensasson; Daniele Daffonchio
Journal:  Environ Biosafety Res       Date:  2007-09-12

6.  In situ Characterization of Biofilm Exopolymers Involved in the Accumulation of Chlorinated Organics

Authors: 
Journal:  Microb Ecol       Date:  1998-05       Impact factor: 4.552

7.  Enzymatic deglycosylation of asparagine-linked glycans: purification, properties, and specificity of oligosaccharide-cleaving enzymes from Flavobacterium meningosepticum.

Authors:  A L Tarentino; T H Plummer
Journal:  Methods Enzymol       Date:  1994       Impact factor: 1.600

Review 8.  Relevance of microbial extracellular polymeric substances (EPSs)--Part II: Technical aspects.

Authors:  H C Flemming; J Wingender
Journal:  Water Sci Technol       Date:  2001       Impact factor: 1.915

9.  Structural analysis of dispersin B, a biofilm-releasing glycoside hydrolase from the periodontopathogen Actinobacillus actinomycetemcomitans.

Authors:  N Ramasubbu; L M Thomas; C Ragunath; J B Kaplan
Journal:  J Mol Biol       Date:  2005-04-14       Impact factor: 5.469

10.  DNA-containing membrane vesicles of Pseudomonas aeruginosa PAO1 and their genetic transformation potential.

Authors:  Marika Renelli; Valério Matias; Reggie Y Lo; Terry J Beveridge
Journal:  Microbiology (Reading)       Date:  2004-07       Impact factor: 2.777

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  37 in total

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Journal:  ISME J       Date:  2010-07-29       Impact factor: 10.302

2.  Pfs promotes autolysis-dependent release of eDNA and biofilm formation in Staphylococcus aureus.

Authors:  Yan Bao; Xu Zhang; Qiu Jiang; Ting Xue; Baolin Sun
Journal:  Med Microbiol Immunol       Date:  2014-09-04       Impact factor: 3.402

3.  The disulfide bonding system suppresses CsgD-independent cellulose production in Escherichia coli.

Authors:  David A Hufnagel; William H DePas; Matthew R Chapman
Journal:  J Bacteriol       Date:  2014-08-11       Impact factor: 3.490

4.  Role of Wall Shear Stress in Cryptosporidium parvum Oocyst Attachment to Environmental Biofilms.

Authors:  Xia Luo; Sabrina S Jedlicka; Kristen L Jellison
Journal:  Appl Environ Microbiol       Date:  2017-12-01       Impact factor: 4.792

5.  Global regulator H-NS and lipoprotein NlpI influence production of extracellular DNA in Escherichia coli.

Authors:  Viviana Sanchez-Torres; Toshinari Maeda; Thomas K Wood
Journal:  Biochem Biophys Res Commun       Date:  2010-09-15       Impact factor: 3.575

6.  In vitro characterization of biofilms formed by Kingella kingae.

Authors:  J B Kaplan; V Sampathkumar; M Bendaoud; A K Giannakakis; E T Lally; N V Balashova
Journal:  Mol Oral Microbiol       Date:  2016-12-12       Impact factor: 3.563

7.  Differential protection from tobramycin by extracellular polymeric substances from Acinetobacter baumannii and Staphylococcus aureus biofilms.

Authors:  Emily K Davenport; Douglas R Call; Haluk Beyenal
Journal:  Antimicrob Agents Chemother       Date:  2014-06-09       Impact factor: 5.191

8.  Aminoglycoside inhibition of Staphylococcus aureus biofilm formation is nutrient dependent.

Authors:  Michelle J Henry-Stanley; Donavon J Hess; Carol L Wells
Journal:  J Med Microbiol       Date:  2014-04-02       Impact factor: 2.472

Review 9.  The role of extracellular DNA in the formation, architecture, stability, and treatment of bacterial biofilms.

Authors:  Hannah Panlilio; Charles V Rice
Journal:  Biotechnol Bioeng       Date:  2021-03-27       Impact factor: 4.530

10.  Pathogenicity of exopolysaccharide-producing Actinomyces oris isolated from an apical abscess lesion.

Authors:  K Yamane; T Nambu; T Yamanaka; K Ishihara; T Tatami; C Mashimo; C B Walker; K-P Leung; H Fukushima
Journal:  Int Endod J       Date:  2012-08-17       Impact factor: 5.264

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