Allelic variations and gene cluster modularity act as nonlinear bottlenecks for cholera emergence
Abstract
The underlying factors that lead to specific strains within a species to emerge as human pathogens remain mostly enigmatic. The diarrheal disease cholera is caused by strains from a phylogenetically confined group within the Vibrio cholerae species, the pandemic cholera group (PCG), making it an ideal model system to tackle this puzzling phenomenon. Comprehensive analyses of over 1,840 V. cholerae genomes, including environmental isolates from this study, reveal that the species consists of eleven groups, with the PCG belonging to the largest and located within a lineage shared with environmental strains. This hierarchical classification provided us with a framework to unravel the ecoevolutionary dynamics of the genetic determinants associated with the emergence of toxigenic V. cholerae . Our analyses indicate that this phenomenon is largely dependent on the acquisition of unique modular gene clusters and allelic variations that confer a competitive advantage during intestinal colonization. We determined that certain PCG-associated alleles are essential for successful colonization whereas others provide a nonlinear competitive advantage, acting as a critical bottleneck that clarifies the isolated emergence of PCG. For instance, toxigenic strains encoding non-PCG alleles of a) tcpF or b) a sextuple allelic exchange mutant for genes tcpA , toxT , VC0176 , VC1791 , rfbT, and ompU , lose their ability to colonize the intestine. Interestingly, these alleles do not play a role in the colonization of newly established model environmental reservoirs. Our study uncovers the evolutionary roots of toxigenic V. cholerae offering a tractable approach for investigating the emergence of pathogenic clones within an environmental population.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (8)
Mario López-Pérez
Burnett School of Biomedical Sciences, College of Medicine, University of Central
Deepak Balasubramanian
Burnett School of Biomedical Sciences, College of Medicine, University of Central
Alicia Campos-Lopez
Burnett School of Biomedical Sciences, College of Medicine, University of Central
Cole Crist
Burnett School of Biomedical Sciences, College of Medicine, University of Central
Trudy-Ann Grant
Burnett School of Biomedical Sciences, College of Medicine, University of Central
Jose M. Haro-Moreno
Microbial Genomics and Evolution Group, División de Microbiología, Universidad Miguel Hernández
Asier Zaragoza-Solas
Microbial Genomics and Evolution Group, División de Microbiología, Universidad Miguel Hernández
Salvador Almagro-Moreno
Burnett School of Biomedical Sciences, College of Medicine, University of Central