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1.
PLoS One ; 9(9): e107319, 2014.
Article in English | MEDLINE | ID: mdl-25255224

ABSTRACT

The GC contents of 2670 prokaryotic genomes that belong to diverse phylogenetic lineages were analyzed in this paper. These genomes had GC contents that ranged from 13.5% to 74.9%. We analyzed the distance of base frequencies at the three codon positions, codon frequencies, and amino acid compositions across genomes with respect to the differences in the GC content of these prokaryotic species. We found that although the phylogenetic lineages were remote among some species, a similar genomic GC content forced them to adopt similar base usage patterns at the three codon positions, codon usage patterns, and amino acid usage patterns. Our work demonstrates that in prokaryotic genomes: a) base usage, codon usage, and amino acid usage change with GC content with a linear correlation; b) the distance of each usage has a linear correlation with the GC content difference; and c) GC content is more essential than phylogenetic lineage in determining base usage, codon usage, and amino acid usage. This work is exceptional in that we adopted intuitively graphic methods for all analyses, and we used these analyses to examine as many as 2670 prokaryotes. We hope that this work is helpful for understanding common features in the organization of microbial genomes.


Subject(s)
Amino Acids/genetics , Base Composition , Codon/genetics , Genome, Archaeal/genetics , Genome, Bacterial/genetics , Genomics , Phylogeny
2.
Biochem Biophys Res Commun ; 403(3-4): 375-9, 2010 Dec 17.
Article in English | MEDLINE | ID: mdl-21078295

ABSTRACT

Most bacterial genomes have one single chromosome. The species Burkholderia cenocepacia, a Gram-negative ß-proteobacterium, is one of the exceptions. Genomes of four strains of the species have been sequenced and each has three circular chromosomes. In the genus Burkholderia, there are another seven sequenced strains that have three chromosomes. In this paper, the numbers of essential genes and tRNA genes among the 11 strains of the genus Burkholderia are compared. Interestingly, it is found that the shortest chromosome of B. cenocepacia AU-1054 has much (over three times) more essential genes and tRNA genes than the corresponding chromosomes in the other 10 strains. However, no significant difference has been found on the two longer chromosomes among the 11 strains. Non-homologous chromosomal translocation between chromosomes I and III in the species B. cenocepacia is found to be responsible for the unusual distribution of essential genes. The present work may contribute to the understanding of how the secondary chromosomes of multipartite bacterial genomes originate and evolve. The computer program, DEG_match, for comparatively identifying essential genes in any annotated bacterial genomes is freely available at http://cobi.uestc.edu.cn/resource/AU1054/.


Subject(s)
Burkholderia cenocepacia/genetics , Chromosomes, Bacterial/genetics , Genome, Bacterial/genetics , Translocation, Genetic , RNA, Transfer/genetics , Ribosomal Proteins/genetics
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