Literature DB >> 19346311

Analysis of ten Brucella genomes reveals evidence for horizontal gene transfer despite a preferred intracellular lifestyle.

Alice R Wattam1, Kelly P Williams, Eric E Snyder, Nalvo F Almeida, Maulik Shukla, A W Dickerman, O R Crasta, R Kenyon, J Lu, J M Shallom, H Yoo, T A Ficht, R M Tsolis, C Munk, R Tapia, C S Han, J C Detter, D Bruce, T S Brettin, Bruno W Sobral, Stephen M Boyle, João C Setubal.   

Abstract

The facultative intracellular bacterial pathogen Brucella infects a wide range of warm-blooded land and marine vertebrates and causes brucellosis. Currently, there are nine recognized Brucella species based on host preferences and phenotypic differences. The availability of 10 different genomes consisting of two chromosomes and representing six of the species allowed for a detailed comparison among themselves and relatives in the order Rhizobiales. Phylogenomic analysis of ortholog families shows limited divergence but distinct radiations, producing four clades as follows: Brucella abortus-Brucella melitensis, Brucella suis-Brucella canis, Brucella ovis, and Brucella ceti. In addition, Brucella phylogeny does not appear to reflect the phylogeny of Brucella species' preferred hosts. About 4.6% of protein-coding genes seem to be pseudogenes, which is a relatively large fraction. Only B. suis 1330 appears to have an intact beta-ketoadipate pathway, responsible for utilization of plant-derived compounds. In contrast, this pathway in the other species is highly pseudogenized and consistent with the "domino theory" of gene death. There are distinct shared anomalous regions (SARs) found in both chromosomes as the result of horizontal gene transfer unique to Brucella and not shared with its closest relative Ochrobactrum, a soil bacterium, suggesting their acquisition occurred in spite of a predominantly intracellular lifestyle. In particular, SAR 2-5 appears to have been acquired by Brucella after it became intracellular. The SARs contain many genes, including those involved in O-polysaccharide synthesis and type IV secretion, which if mutated or absent significantly affect the ability of Brucella to survive intracellularly in the infected host.

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Year:  2009        PMID: 19346311      PMCID: PMC2681906          DOI: 10.1128/JB.01767-08

Source DB:  PubMed          Journal:  J Bacteriol        ISSN: 0021-9193            Impact factor:   3.490


  59 in total

1.  Selection of conserved blocks from multiple alignments for their use in phylogenetic analysis.

Authors:  J Castresana
Journal:  Mol Biol Evol       Date:  2000-04       Impact factor: 16.240

2.  Report of the ad hoc committee for the re-evaluation of the species definition in bacteriology.

Authors:  Erko Stackebrandt; Wilhelm Frederiksen; George M Garrity; Patrick A D Grimont; Peter Kämpfer; Martin C J Maiden; Xavier Nesme; Ramon Rosselló-Mora; Jean Swings; Hans G Trüper; Luc Vauterin; Alan C Ward; William B Whitman
Journal:  Int J Syst Evol Microbiol       Date:  2002-05       Impact factor: 2.747

3.  RAxML-VI-HPC: maximum likelihood-based phylogenetic analyses with thousands of taxa and mixed models.

Authors:  Alexandros Stamatakis
Journal:  Bioinformatics       Date:  2006-08-23       Impact factor: 6.937

4.  The genome sequence of the facultative intracellular pathogen Brucella melitensis.

Authors:  Vito G DelVecchio; Vinayak Kapatral; Rajendra J Redkar; Guy Patra; Cesar Mujer; Tamara Los; Natalia Ivanova; Iain Anderson; Anamitra Bhattacharyya; Athanasios Lykidis; Gary Reznik; Lynn Jablonski; Niels Larsen; Mark D'Souza; Axel Bernal; Mikhail Mazur; Eugene Goltsman; Eugene Selkov; Philip H Elzer; Sue Hagius; David O'Callaghan; Jean-Jacques Letesson; Robert Haselkorn; Nikos Kyrpides; Ross Overbeek
Journal:  Proc Natl Acad Sci U S A       Date:  2001-12-26       Impact factor: 11.205

5.  Protection of BALB/c mice against homologous and heterologous species of Brucella by rough strain vaccines derived from Brucella melitensis and Brucella suis biovar 4.

Authors:  A J Winter; G G Schurig; S M Boyle; N Sriranganathan; J S Bevins; F M Enright; P H Elzer; J D Kopec
Journal:  Am J Vet Res       Date:  1996-05       Impact factor: 1.156

6.  Characterization of the beta-ketoadipate pathway in Sinorhizobium meliloti.

Authors:  Allyson M MacLean; Gordon MacPherson; Punita Aneja; Turlough M Finan
Journal:  Appl Environ Microbiol       Date:  2006-08       Impact factor: 4.792

7.  Genetic characterization of a Tn5-disrupted glycosyltransferase gene homolog in Brucella abortus and its effect on lipopolysaccharide composition and virulence.

Authors:  J R McQuiston; R Vemulapalli; T J Inzana; G G Schurig; N Sriranganathan; D Fritzinger; T L Hadfield; R A Warren; L E Lindler; N Snellings; D Hoover; S M Halling; S M Boyle
Journal:  Infect Immun       Date:  1999-08       Impact factor: 3.441

8.  Risk of infection with Brucella abortus and Escherichia coli O157:H7 associated with marketing of unpasteurized milk in Kenya.

Authors:  S M Arimi; E Koroti; E K Kang'ethe; A O Omore; J J McDermott
Journal:  Acta Trop       Date:  2005-10       Impact factor: 3.112

9.  Evaluation of genomic island predictors using a comparative genomics approach.

Authors:  Morgan G I Langille; William W L Hsiao; Fiona S L Brinkman
Journal:  BMC Bioinformatics       Date:  2008-08-05       Impact factor: 3.169

10.  Brucellosis vaccines: assessment of Brucella melitensis lipopolysaccharide rough mutants defective in core and O-polysaccharide synthesis and export.

Authors:  David González; María-Jesús Grilló; María-Jesús De Miguel; Tara Ali; Vilma Arce-Gorvel; Rose-May Delrue; Raquel Conde-Alvarez; Pilar Muñoz; Ignacio López-Goñi; Maite Iriarte; Clara-M Marín; Andrej Weintraub; Göran Widmalm; Michel Zygmunt; Jean-Jacques Letesson; Jean-Pierre Gorvel; José-María Blasco; Ignacio Moriyón
Journal:  PLoS One       Date:  2008-07-23       Impact factor: 3.240

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  52 in total

1.  Revised genome sequence of Brucella suis 1330.

Authors:  Hongseok Tae; Shamira Shallom; Robert Settlage; Dale Preston; L Garry Adams; Harold R Garner
Journal:  J Bacteriol       Date:  2011-11       Impact factor: 3.490

2.  A genome-wide identification of genes potentially associated with host specificity of Brucella species.

Authors:  Kyung Mo Kim; Kyu-Won Kim; Samsun Sung; Heebal Kim
Journal:  J Microbiol       Date:  2011-11-09       Impact factor: 3.422

Review 3.  PATRIC: the comprehensive bacterial bioinformatics resource with a focus on human pathogenic species.

Authors:  Joseph J Gillespie; Alice R Wattam; Stephen A Cammer; Joseph L Gabbard; Maulik P Shukla; Oral Dalay; Timothy Driscoll; Deborah Hix; Shrinivasrao P Mane; Chunhong Mao; Eric K Nordberg; Mark Scott; Julie R Schulman; Eric E Snyder; Daniel E Sullivan; Chunxia Wang; Andrew Warren; Kelly P Williams; Tian Xue; Hyun Seung Yoo; Chengdong Zhang; Yan Zhang; Rebecca Will; Ronald W Kenyon; Bruno W Sobral
Journal:  Infect Immun       Date:  2011-09-06       Impact factor: 3.441

4.  Comparative genomic analysis of Brucella abortus vaccine strain 104M reveals a set of candidate genes associated with its virulence attenuation.

Authors:  Dong Yu; Yiming Hui; Xiaodong Zai; Junjie Xu; Long Liang; Bingxiang Wang; Junjie Yue; Shanhu Li
Journal:  Virulence       Date:  2015-06-03       Impact factor: 5.882

5.  Parallel gene loss and acquisition among strains of different Brucella species and biovars.

Authors:  Zhijun Zhong; Yufei Wang; Jie Xu; Yanfen Chen; Yuehua Ke; Xiaoyan Zhou; Xitong Yuan; Dongsheng Zhou; Yi Yang; Ruifu Yang; Guangneng Peng; Hai Jiang; Jing Yuan; Hongbin Song; Buyun Cui; Liuyu Huang; Zeliang Chen
Journal:  J Microbiol       Date:  2012-08-25       Impact factor: 3.422

Review 6.  Brucella taxonomy and evolution.

Authors:  Thomas Ficht
Journal:  Future Microbiol       Date:  2010-06       Impact factor: 3.165

7.  Genomic comparisons of Brucella spp. and closely related bacteria using base compositional and proteome based methods.

Authors:  Jon Bohlin; Lars Snipen; Axel Cloeckaert; Karin Lagesen; David Ussery; Anja B Kristoffersen; Jacques Godfroid
Journal:  BMC Evol Biol       Date:  2010-08-13       Impact factor: 3.260

8.  Comparison of genomes of Brucella melitensis M28 and the B. melitensis M5-90 derivative vaccine strain highlights the translation elongation factor Tu gene tuf2 as an attenuation-related gene.

Authors:  Fangkun Wang; Zujian Qiao; Sen Hu; Wenxing Liu; Huajun Zheng; Sidang Liu; Xiaomin Zhao; Zhigao Bu
Journal:  Infect Immun       Date:  2013-05-28       Impact factor: 3.441

9.  Brucella microti: the genome sequence of an emerging pathogen.

Authors:  Stéphane Audic; Magali Lescot; Jean-Michel Claverie; Holger C Scholz
Journal:  BMC Genomics       Date:  2009-08-04       Impact factor: 3.969

10.  ATP-Binding Cassette Systems of Brucella.

Authors:  Dominic C Jenner; Elie Dassa; Adrian M Whatmore; Helen S Atkins
Journal:  Comp Funct Genomics       Date:  2010-02-11
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