Incidence and Virulence Factor Profiling of Vibrio Species: A Study on Hospital and Community Wastewater Effluents

Author:

Mavhungu Mashudu12,Digban Tennison O.12,Nwodo Uchechukwu U.12

Affiliation:

1. Patho-Biocatalysis Group, Department of Biochemistry and Microbiology, University of Fort Hare, Private Bag X1314, Alice 5700, South Africa

2. Department of Biochemistry and Microbiology, University of Fort Hare, Alice 5700, South Africa

Abstract

This study aimed to determine the incidence and virulence factor profiling of Vibrio species from hospital wastewater (HWW) and community wastewater effluents. Wastewater samples from selected sites were collected, processed, and analysed presumptively by the culture dependent methods and molecular techniques. A total of 270 isolates were confirmed as Vibrio genus delineating into V. cholerae (27%), V. parahaemolyticus (9.1%), V. vulnificus (4.1%), and V. fluvialis (3%). The remainder (>50%) may account for other Vibrio species not identified in the study. The four Vibrio species were isolated from secondary hospital wastewater effluent (SHWE), while V. cholerae was the sole specie isolated from Limbede community wastewater effluent (LCWE) and none of the four Vibrio species was recovered from tertiary hospital wastewater effluent (THWE). However, several virulence genes were identified among V. cholerae isolates from SHWE: ToxR (88%), hylA (81%), tcpA (64%), VPI (58%), ctx (44%), and ompU (34%). Virulence genes factors among V. cholerae isolates from LCWE were: ToxR (78%), ctx (67%), tcpA (44%), and hylA (44%). Two different genes (vfh and hupO) were identified in all confirmed V. fluvialis isolates. Among V. vulnificus, vcgA (50%) and vcgB (67%) were detected. In V. parahaemolyticus, tdh (56%) and tlh (100%) were also identified. This finding reveals that the studied aquatic niches pose serious potential health risk with Vibrio species harbouring virulence signatures. The distribution of virulence genes is valuable for ecological site quality, as well as epidemiological marker in the control and management of diseases caused by Vibrio species. Regular monitoring of HWW and communal wastewater effluent would allow relevant establishments to forecast, detect, and mitigate any public health threats in advance.

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

Reference78 articles.

1. World Health Organization (2019). National Systems to Support Drinking-Water: Sanitation and Hygiene: Global Status Report 2019: UN-Water Global Analysis and Assessment of Sanitation and Drinking-Water: GLAAS 2019 Report.

2. Infectious disease threats in the twenty-first century: Strengthening the global response;Bloom;Front. Immunol.,2019

3. Climate change effects on biodiversity, ecosystems, ecosystem services, and natural resource management in the United States;Weiskopf;Sci. Total Environ.,2020

4. The 2020 report of the Lancet Countdown on health and climate change: Responding to converging crises;Watts;Lancet,2021

5. Environmental investigation for the presence of Vibrio species following a case of severe gastroenteritis in a touristic island;Economopoulos;Environ. Sci. Pollut. Res.,2017

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