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Updated: Apr 27, 2026

Heuristic Mining of Hierarchical Genotypes and Accessory Genome Loci in Bacterial Populations
Published on: December 7, 2021
Positive correlations between genomic %AT and genome size within strains of bacterial species
Jon Bohlin1, Camilla Sekse, Eystein Skjerve
1Division of Epidemiology, Norwegian Institute of Public Health, Marcus Thranes Gate 6, P.O. Box 4404, 0403, Oslo, Norway; Epi-Centre, Department of Food-Safety and Infection Biology, Norwegian School of Veterinary Science, Ullevålsveien 72, P.O. Box 8146 Dep, NO-0033, Oslo, Norway.
Abstract:
Genomic %AT has been found to correlate negatively with genome size in microbes. While microbes with large genomes are often GC rich and free living, AT-rich bacteria tend to be host associated with smaller genomes. With over 2000 fully sequenced and assembled microbial genomes available, we explored the relationship among genomic %AT, genome size, relative entropy (a measure associated with genetic drift) and fraction of genome islands (GIs) in microbial species with the genomes of more than 10 strains available. A negative correlation with genome size was found in six out of 12 phylogenetic groups and subphyla and a positive correlation in only two. At the species level, we found a trend of positive correlations between genomic %AT and genome size in eight out of 20 species, while only four showed a negative correlation. Estimated chromosomal fractions of GIs were found to correlate positively with genome size in the strains of 14 out of 18 species and genomic %AT in the strains of seven species (two correlated negatively). Although GIs explain most of the observed positive correlations between genomic %AT and size, Chlamydia trachomatis seem to be an exception; therefore, these findings needs to be further explored.
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