Literature DB >> 21642396

Global gene expression profile for swarming Bacillus cereus bacteria.

Sara Salvetti1, Karoline Faegri, Emilia Ghelardi, Anne-Brit Kolstø, Sonia Senesi.   

Abstract

Bacillus cereus can use swarming to move over and colonize solid surfaces in different environments. This kind of motility is a collective behavior accompanied by the production of long and hyperflagellate swarm cells. In this study, the genome-wide transcriptional response of B. cereus ATCC 14579 during swarming was analyzed. Swarming was shown to trigger the differential expression (>2-fold change) of 118 genes. Downregulated genes included those required for basic cellular metabolism. In accordance with the hyperflagellate phenotype of the swarm cell, genes encoding flagellin were overexpressed. Some genes associated with K(+) transport, phBC6A51 phage genes, and the binding component of the enterotoxin hemolysin BL (HBL) were also induced. Quantitative reverse transcription-PCR (qRT-PCR) experiments indicated an almost 2-fold upregulation of the entire hbl operon during swarming. Finally, BC1435 and BC1436, orthologs of liaI-liaH that are known to be involved in the resistance of Bacillus subtilis to daptomycin, were upregulated under swarming conditions. Accordingly, phenotypic assays showed reduced susceptibility of swarming B. cereus cells to daptomycin, and P(spac)-induced hyper-expression of these genes in liquid medium highlighted the role of BC1435 and BC1436 in the response of B. cereus to daptomycin.

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Year:  2011        PMID: 21642396      PMCID: PMC3147438          DOI: 10.1128/AEM.00245-11

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


  57 in total

Review 1.  Regulation of flagellar assembly.

Authors:  Phillip Aldridge; Kelly T Hughes
Journal:  Curr Opin Microbiol       Date:  2002-04       Impact factor: 7.934

Review 2.  Features of Bacillus cereus swarm cells.

Authors:  Sonia Senesi; Sara Salvetti; Francesco Celandroni; Emilia Ghelardi
Journal:  Res Microbiol       Date:  2010-10-28       Impact factor: 3.992

Review 3.  Swarmer cell differentiation in Proteus mirabilis.

Authors:  Philip N Rather
Journal:  Environ Microbiol       Date:  2005-08       Impact factor: 5.491

Review 4.  Living on a surface: swarming and biofilm formation.

Authors:  Natalie Verstraeten; Kristien Braeken; Bachaspatimayum Debkumari; Maarten Fauvart; Jan Fransaer; Jan Vermant; Jan Michiels
Journal:  Trends Microbiol       Date:  2008-09-03       Impact factor: 17.079

5.  Transcriptome of swarming Proteus mirabilis.

Authors:  Melanie M Pearson; David A Rasko; Sara N Smith; Harry L T Mobley
Journal:  Infect Immun       Date:  2010-04-05       Impact factor: 3.441

6.  Processing of a sporulation sigma factor in Bacillus subtilis: how morphological structure could control gene expression.

Authors:  P Stragier; C Bonamy; C Karmazyn-Campelli
Journal:  Cell       Date:  1988-03-11       Impact factor: 41.582

Review 7.  Bacillus cereus bacteremia and meningitis in immunocompromised children.

Authors:  A H Gaur; C C Patrick; J A McCullers; P M Flynn; T A Pearson; B I Razzouk; S J Thompson; J L Shenep
Journal:  Clin Infect Dis       Date:  2001-04-20       Impact factor: 9.079

8.  Role of swarming migration in the pathogenesis of bacillus endophthalmitis.

Authors:  Michelle C Callegan; Billy D Novosad; Raul Ramirez; Emilia Ghelardi; Sonia Senesi
Journal:  Invest Ophthalmol Vis Sci       Date:  2006-10       Impact factor: 4.799

9.  Genome-wide screening of genes required for swarming motility in Escherichia coli K-12.

Authors:  Tetsuyoshi Inoue; Ryuji Shingaki; Shotaro Hirose; Kaori Waki; Hirotada Mori; Kazuhiro Fukui
Journal:  J Bacteriol       Date:  2006-11-22       Impact factor: 3.490

Review 10.  From soil to gut: Bacillus cereus and its food poisoning toxins.

Authors:  Lotte P Stenfors Arnesen; Annette Fagerlund; Per Einar Granum
Journal:  FEMS Microbiol Rev       Date:  2008-04-15       Impact factor: 16.408

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  27 in total

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Authors:  Jonathan D Partridge; Rasika M Harshey
Journal:  J Bacteriol       Date:  2012-12-21       Impact factor: 3.490

2.  Antifungal activity and genomic characterization of the biocontrol agent Bacillus velezensis CMRP 4489.

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3.  SigB regulates stress resistance, glucose starvation, MnSOD production, biofilm formation, and root colonization in Bacillus cereus 905.

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4.  Bacteria-surface interactions.

Authors:  Hannah H Tuson; Douglas B Weibel
Journal:  Soft Matter       Date:  2013-05-14       Impact factor: 3.679

Review 5.  Swarming: flexible roaming plans.

Authors:  Jonathan D Partridge; Rasika M Harshey
Journal:  J Bacteriol       Date:  2012-12-21       Impact factor: 3.490

6.  PlcRa, a new quorum-sensing regulator from Bacillus cereus, plays a role in oxidative stress responses and cysteine metabolism in stationary phase.

Authors:  Eugénie Huillet; Marcel H Tempelaars; Gwenaëlle André-Leroux; Pagakrong Wanapaisan; Ludovic Bridoux; Samira Makhzami; Watanalai Panbangred; Isabelle Martin-Verstraete; Tjakko Abee; Didier Lereclus
Journal:  PLoS One       Date:  2012-12-11       Impact factor: 3.240

7.  Genomic and transcriptomic insights into the efficient entomopathogenicity of Bacillus thuringiensis.

Authors:  Lei Zhu; Donghai Peng; Yueying Wang; Weixing Ye; Jinshui Zheng; Changming Zhao; Dongmei Han; Ce Geng; Lifang Ruan; Jin He; Ziniu Yu; Ming Sun
Journal:  Sci Rep       Date:  2015-09-28       Impact factor: 4.379

8.  Clinical characteristics and antimicrobial susceptibility of Bacillus cereus blood stream infections.

Authors:  Mahoko Ikeda; Yuka Yagihara; Keita Tatsuno; Mitsuhiro Okazaki; Shu Okugawa; Kyoji Moriya
Journal:  Ann Clin Microbiol Antimicrob       Date:  2015-09-15       Impact factor: 3.944

9.  Proteomics identifies Bacillus cereus EntD as a pivotal protein for the production of numerous virulence factors.

Authors:  Hélène Omer; Béatrice Alpha-Bazin; Jean-Luc Brunet; Jean Armengaud; Catherine Duport
Journal:  Front Microbiol       Date:  2015-10-07       Impact factor: 5.640

10.  Metabolomic analysis of cooperative adaptation between co-cultured Bacillus cereus and Ketogulonicigenium vulgare.

Authors:  Ming-Zhu Ding; Yang Zou; Hao Song; Ying-Jin Yuan
Journal:  PLoS One       Date:  2014-04-11       Impact factor: 3.240

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