How clonal are bacteria?
Open Access
- 15 May 1993
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 90 (10) , 4384-4388
- https://doi.org/10.1073/pnas.90.10.4384
Abstract
Data from multilocus enzyme electrophoresis of bacterial populations were analyzed using a statistical test designed to detect associations between genes at different loci. Some species (e.g., Salmonella) were found to be clonal at all levels of analysis. At the other extreme, Neisseria gonorrhoeae is panmictic, with random association between loci. Two intermediate types of population structure were also found. Neisseria meningitidis displays what we have called an "epidemic" structure. There is significant association between loci, but this arises only because of the recent, explosive, increase in particular electrophoretic types; when this effect is eliminated the population is found to be effectively panmictic. In contrast, linkage disequilibrium in a population of Rhizobium meliloti exists because the sample consisted of two genetically isolated divisions, often fixed for different alleles: within each division association between loci was almost random. The method of analysis is appropriate whenever there is doubt about the extent of genetic recombination between members of a population. To illustrate this we analyzed data on protozoan parasites and again found panmictic, epidemic, and clonal population structures.Keywords
This publication has 28 references indexed in Scilit:
- Sexuality in a natural population of bacteria–Bacillus subtilis challenges the clonal paradigmMolecular Ecology, 1992
- Genetic diversity of Plasmodium falciparum in a village in eastern Sudan. 1. Diversity of enzymes, 2D-PAGE proteins and antigensTransactions of the Royal Society of Tropical Medicine and Hygiene, 1991
- The barrier to recombination between Escherichia coli and Salmonella typhimurium is disrupted in mismatch-repair mutantsNature, 1989
- DNA transformation leads to pilin antigenic variation in Neisseria gonorrhoeaeNature, 1988
- Genetic Diversity and Relationships of Two Pathovars of Pseudomonas syringaeMicrobiology, 1988
- Hybrid penicillin-binding proteins in penicillin-resistant strains of Neisseria gonorrhoeaeNature, 1988
- Recombination among Protein II genes of Neisseria gonorrhoeae generates new coding sequences and increases structural variability in the Protein II familyMolecular Microbiology, 1988
- Linkage Disequilibrium in Natural Populations ofTrypanosoma cruzi(Flagellate), the Agent of Chagas’ Disease1The Journal of Protozoology, 1988
- Hybrid formation between African trypanosomes during cyclical transmissionNature, 1986
- Enzyme Polymorphism and Genetic Population Structure in Escherichia coli and ShigellaMicrobiology, 1983