Abstract
Brucella species are facultative intracellular pathogenic α-Proteobacteria that can cause brucellosis in humans and domestic animals. The clinical and veterinary importance of the bacteria has led to well established studies on the molecular mechanisms of Brucella infection of host organisms. However, to date, no genome-wide study has scanned for genes related to the host specificity of Brucella spp. The majority of bacterial genes related to specific environmental adaptations such as host specificity are well-known to have evolved under positive selection pressure. We thus detected signals of positive selection for individual orthologous genes among Brucella genomes and identified genes related to host specificity. We first determined orthologous sets from seven completely sequenced Brucella genomes using the Reciprocal Best Hits (RBH). A maximum likelihood analysis based on the branch-site test was accomplished to examine the presence of positive selection signals, which was subsequently confirmed by phylogenetic analysis. Consequently, 12 out of 2,033 orthologous genes were positively selected by specific Brucella lineages, each of which belongs to a particular animal host. Extensive literature reviews revealed that half of these computationally identified genes are indeed involved in Brucella host specificity. We expect that this genome-wide approach based on positive selection may be reliably used to screen for genes related to environmental adaptation of a particular species and that it will provide a set of appropriate candidate genes.
Citations
Citations to this article as recorded by

- Clade-specific positive selection on a developmental gene: BRANCHLESS TRICHOME and the evolution of stellate trichomes in Physaria (Brassicaceae)
Abigail R. Mazie, David A. Baum
Molecular Phylogenetics and Evolution.2016; 100: 31. CrossRef - Identification of Recombination and Positively Selected Genes in Brucella
Udayakumar S. Vishnu, Jagadesan Sankarasubramanian, Jayavel Sridhar, Paramasamy Gunasekaran, Jeyaprakash Rajendhran
Indian Journal of Microbiology.2015; 55(4): 384. CrossRef - Comparison of Brucella canis genomes isolated from different countries shows multiple variable regions
Miryan Margot Sánchez-Jiménez, Juan Pablo Isaza, Juan F. Alzate, Martha Olivera-Angel
Genomics.2015; 106(1): 43. CrossRef - Complete Genome Sequence of Brucella canis Strain 118, a Strain Isolated from Canine
Guangjun Gao, Jing Li, Tiefeng Li, Zhengfang Zhang, Liping Wang, Xitong Yuan, Yufei Wang, Jie Xu, Yuehua Ke, Liuyu Huang, Dali Wang, Zeliang Chen, Xingran Xu
Journal of Bacteriology.2012; 194(23): 6680. CrossRef - Complete Genome Sequence of Brucella canis BCB018, a Strain Isolated from a Human Patient
Yufei Wang, Yuehua Ke, Qing Zhen, Xitong Yuan, Jie Xu, Yefeng Qiu, Zhoujia Wang, Tiefeng Li, Dali Wang, Liuyu Huang, Zeliang Chen
Journal of Bacteriology.2012; 194(23): 6697. CrossRef