Literature DB >> 16397770

Motility influences biofilm architecture in Escherichia coli.

Thomas K Wood1, Andrés F González Barrios, Moshe Herzberg, Jintae Lee.   

Abstract

Eight Escherichia coli strains were studied in minimal medium with a continuous flow system using confocal microscopy. K12 wild-type strains ATCC 25404 and MG1655 formed the best biofilms ( approximately 43 microm thick, 21 to 34% surface coverage). JM109, DH5alpha, and MG1655 motA formed intermediate biofilms ( approximately 13 microm thick, 41 to 58% surface coverage). BW25113, MG1655 qseB, and MG1655 fliA had poor biofilms (surface coverage less than 5%). The best biofilm-formers, ATCC 25404 and MG1655, displayed the highest motility, whereas the worst biofilm former, BW25113, was motility-impaired. The differences in motility were due to differences in expression of the motility loci qseB, flhD, fliA, fliC, and motA (e.g., qseB expression in MG1655 was 139-fold higher than BW25113 and 209-fold higher than JM109). Motility affected the biofilm architecture as those strains which had poor motility (E. coli JM109, E. coli MG1655 motA, and DH5alpha) formed flatter microcolonies compared with MG1655 and ATCC 25404, which had more dramatic vertical structures as a result of their enhanced motility. The presence of flagella was also found to be important as qseB and fliA mutants (which lack flagella) had less biofilm than the isogenic paralyzed motA strain (threefold less thickness and 15-fold less surface coverage).

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Year:  2006        PMID: 16397770     DOI: 10.1007/s00253-005-0263-8

Source DB:  PubMed          Journal:  Appl Microbiol Biotechnol        ISSN: 0175-7598            Impact factor:   4.813


  108 in total

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3.  GGDEF proteins YeaI, YedQ, and YfiN reduce early biofilm formation and swimming motility in Escherichia coli.

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4.  Bacterial aggregation and biofilm formation in a vortical flow.

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5.  IS5 inserts upstream of the master motility operon flhDC in a quasi-Lamarckian way.

Authors:  Xiaoxue Wang; Thomas K Wood
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6.  The SmeYZ efflux pump of Stenotrophomonas maltophilia contributes to drug resistance, virulence-related characteristics, and virulence in mice.

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Review 7.  Escherichia coli biofilms.

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8.  Role of RpoN from Labrenzia aggregata LZB033 (Rhodobacteraceae) in Formation of Flagella and Biofilms, Motility, and Environmental Adaptation.

Authors:  Tingting Xu; Min Yu; Jingli Liu; Heyu Lin; Jinchang Liang; Xiao-Hua Zhang
Journal:  Appl Environ Microbiol       Date:  2019-03-22       Impact factor: 4.792

9.  A previously uncharacterized gene, yjfO (bsmA), influences Escherichia coli biofilm formation and stress response.

Authors:  Mary M Weber; Christa L French; Mary B Barnes; Deborah A Siegele; Robert J C McLean
Journal:  Microbiology (Reading)       Date:  2009-10-15       Impact factor: 2.777

10.  The R1 conjugative plasmid increases Escherichia coli biofilm formation through an envelope stress response.

Authors:  Xiaole Yang; Qun Ma; Thomas K Wood
Journal:  Appl Environ Microbiol       Date:  2008-03-14       Impact factor: 4.792

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