Genome Size Determination and Coding Capacity of Sodalis glossinidius , an Enteric Symbiont of Tsetse Flies, as Revealed by Hybridization to Escherichia coli Gene Arrays
Open Access
- 1 August 2001
- journal article
- research article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 183 (15) , 4517-4525
- https://doi.org/10.1128/jb.183.15.4517-4525.2001
Abstract
Recent molecular characterization of various microbial genomes has revealed differences in genome size and coding capacity between obligate symbionts and intracellular pathogens versus free-living organisms. Multiple symbiotic microorganisms have evolved with tsetse fly, the vector of African trypanosomes, over long evolutionary times. Although these symbionts are indispensable for tsetse fecundity, the biochemical and molecular basis of their functional significance is unknown. Here, we report on the genomic aspects of the secondary symbiont Sodalis glossinidius. The genome size ofSodalis is approximately 2 Mb. Its DNA is subject to extensive methylation and based on some of its conserved gene sequences has an A+T content of only 45%, compared to the typically AT-rich genomes of endosymbionts. Sodalis also harbors an extrachromosomal plasmid about 134 kb in size. We used a novel approach to gain insight into Sodalis genomic contents, i.e., hybridizing its DNA to macroarrays developed for Escherichia coli, a closely related enteric bacterium. In this analysis we detected 1,800 orthologous genes, corresponding to about 85% of theSodalis genome. The Sodalis genome has apparently retained its genes for DNA replication, transcription, translation, transport, and the biosynthesis of amino acids, nucleic acids, vitamins, and cofactors. However, many genes involved in energy metabolism and carbon compound assimilation are apparently missing, which may indicate an adaptation to the energy sources available in the only nutrient of the tsetse host, blood. We present gene arrays as a rapid tool for comparative genomics in the absence of whole genome sequence to advance our understanding of closely related bacteria.Keywords
This publication has 34 references indexed in Scilit:
- Tsetse – A Haven for MicroorganismsParasitology Today, 2000
- Sodalis gen. nov. and Sodalis glossinidius sp. nov., a microaerophilic secondary endosymbiont of the tsetse fly Glossina morsitans morsitansInternational Journal of Systematic and Evolutionary Microbiology, 1999
- The Complete Genome Sequence of Escherichia coli K-12Science, 1997
- Intracellular endosymbiotic bacteria of Camponotus species (carpenter ants): systematics, evolution and ultrastructural characterizationMolecular Microbiology, 1996
- Mycetome endosymbionts of tsetse flies constitute a distinct lineage related to EnterobacteriaceaeInsect Molecular Biology, 1995
- Phylogenetically distant symbiotic microorganisms reside in Glossina midgut and ovary tissuesMedical and Veterinary Entomology, 1993
- Rickettsia-like organisms and chitinase production in relation to transmission of trypanosomes by tsetse fliesParasitology, 1993
- Phylogenetic relationships of the endosymbionts of mealybugs (Homoptera: Pseudococcidae) based on 165 rDNA sequencesMolecular Phylogenetics and Evolution, 1992
- Sterility in tsetse flies (Glossina morsitans Westwood) caused by loss of symbiontsCellular and Molecular Life Sciences, 1976
- Secretory discharge and microflora of milk gland in tsetse fliesNature, 1974