Revisiting the Genomic Epidemiology of Distinct Phage-Type Vibrio cholerae Strains Reveals Restricted Spatiotemporal Dissemination During an Epidemic

Переоценка геномной эпидемиологии штаммов Vibrio cholerae с отличающимися фаговыми типами выявляет ограниченное пространственно-временное распространение во время эпидемии
Zhenpeng Li, Biao Kan, Yu Jiang, Wenxuan Zhao, Xiaorong Yang, Fenxia Fan, Bo Pang
2025-07-05

CTXΦ genome copies (chromosome 2)RS1_ET and RS1-4 (chromosome 1)Sichuan Province outbreak (1990s)Vibrio cholerae El Tor biotypeclonal genetic structuregenomic epidemiologyompW deletion mutationphage resistance to VP5phage type 6 (PT6)spatiotemporal transmission
The El Tor biotype of <i>Vibrio cholerae</i> caused the seventh cholera pandemic (7CP). Although <i>V. cholerae</i> variants of this biotype frequently emerge, studies on their microevolution and spatiotemporal transmission in epidemics caused by a single clone are limited. During the cholera outbreak in Sichuan Province, China, in the 1990s, strains belonging to phage type 6 (PT6) but resistant to typing phage VP5 due to a deletion mutation in <i>ompW</i>, which is the gene associated with the VP5 receptor were identified. In this study, we analyzed PT6 strains using genome sequencing to reveal the genomic and transmission characteristics of such a transient phage type in China's cholera epidemic history. The findings revealed that the PT6 strains formed an independent clone during the four-year epidemic and emerged in wave 2. Most of them carried multiple CTX<sup>class</sup>Φ genome copies on chromosome 2 (Chr. 2) and two copies each of RS1<sup>ET</sup> and RS1-4** on chromosome 1 (Chr. 1). Frequent cross-regional transmission and local outbreaks within Sichuan Province, China, were revealed for this clone. A variety of spontaneous mutations in the <i>ompW</i> gene, conferring resistance to the VP5 phage, were observed under VP5 infection pressure, showing the incident mutation of OmpW for the survival adaptation of <i>V. cholerae</i> to phage pressure. Therefore, this genomic epidemiological revisit of these distinct phage-resistant phenotype strains reveals their clonal genetic structure, improves our understanding of the spread of <i>V. cholerae</i> by tracking their variation, and assists in epidemic source tracing and disease control.
1
Genomic analysis of these phage-resistant strains reveals a clonal genetic structure useful for tracking variation, source tracing, and disease control.
2
Most PT6 strains carried multiple CTXclassΦ genome copies on chromosome 2 and two copies each of RS1ET and RS1-4** on chromosome 1.
3
PT6 Vibrio cholerae strains in the 1990s Sichuan outbreak formed an independent clone that emerged in wave 2 of the seventh pandemic.
4
The PT6 clone exhibited frequent cross-regional transmission and local outbreaks within Sichuan Province during the four-year epidemic.
5
Various spontaneous mutations in ompW conferred resistance to VP5 phage under VP5 infection pressure, indicating OmpW mutation as a survival adaptation.

Phage type 6 (PT6) Vibrio cholerae El Tor strains from the 1990s Sichuan, China cholera epidemic

Genomic characteristics and spatiotemporal transmission dynamics of the PT6 clone, including CTXΦ and RS1 copy number variation, ompW deletion/mutation-mediated VP5 phage resistance, clonal structure, and patterns of cross-regional spread and local outbreaks

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2025-07-05
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Zhenpeng Li
Biao Kan
Yu Jiang
Wenxuan Zhao
Xiaorong Yang
Fenxia Fan
Bo Pang
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