Epidemiology, Genetics, and Ecology of Toxigenic <i>Vibrio cholerae</i>
Эпидемиология, генетика и экология токсигенных Vibrio cholerae
1998-12-01
SCID: 54.1/6t3q6r9k
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CTXPhi lysogenic bacteriophageaquatic/ecological reservoirscholera toxin (CT)molecular epidemiologytoxigenic Vibrio cholerae
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Abstract (AI)
Cholera caused by toxigenic Vibrio cholerae is a major public health problem confronting developing countries, where outbreaks occur in a regular seasonal pattern and are particularly associated with poverty and poor sanitation. The disease is characterized by a devastating watery diarrhea which leads to rapid dehydration, and death occurs in 50 to 70% of untreated patients. Cholera is a waterborne disease, and the importance of water ecology is suggested by the close association of V. cholerae with surface water and the population interacting with the water. Cholera toxin (CT), which is responsible for the profuse diarrhea, is encoded by a lysogenic bacteriophage designated CTXPhi. Although the mechanism by which CT causes diarrhea is known, it is not clear why V. cholerae should infect and elaborate the lethal toxin in the host. Molecular epidemiological surveillance has revealed clonal diversity among toxigenic V. cholerae strains and a continual emergence of new epidemic clones. In view of lysogenic conversion by CTXPhi as a possible mechanism of origination of new toxigenic clones of V. cholerae, it appears that the continual emergence of new toxigenic strains and their selective enrichment during cholera outbreaks constitute an essential component of the natural ecosystem for the evolution of epidemic V. cholerae strains and genetic elements that mediate the transfer of virulence genes. The ecosystem comprising V. cholerae, CTXPhi, the aquatic environment, and the mammalian host offers an understanding of the complex relationship between pathogenesis and the natural selection of a pathogen.
Key Findings
1
Cholera caused by toxigenic Vibrio cholerae remains a major public health problem in developing countries, with regular seasonal outbreaks linked to poverty and poor sanitation.
2
Cholera toxin (CT), responsible for profuse diarrhea, is encoded by the lysogenic bacteriophage CTXPhi, implicating lysogenic conversion in toxin acquisition.
3
Molecular epidemiology reveals clonal diversity and continual emergence of new epidemic toxigenic V. cholerae clones.
4
The aquatic ecosystem—including V. cholerae, CTXPhi, surface water, and mammalian hosts—facilitates selection and emergence of new toxigenic strains and horizontal transfer of virulence genes.
5
Untreated cholera leads to rapid dehydration and high mortality, with death occurring in 50–70% of untreated patients.
Research Object
Toxigenic Vibrio cholerae (including its interaction with CTXΦ, aquatic environment, and mammalian host)
Research Subject
Epidemiology, genetics, and ecology of toxigenic Vibrio cholerae, including clonal diversity, emergence of new epidemic clones, lysogenic conversion by CTXΦ, waterborne transmission, and host–environment interactions driving evolution and outbreak dynamics
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1998-12-01
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