Cargando…
A Metagenomic Analysis of Mosquito Virome Collected From Different Animal Farms at Yunnan–Myanmar Border of China
Metagenomic analysis of mosquito-borne and mosquito-specific viruses is useful to understand the viral diversity and for the surveillance of pathogens of medical and veterinary importance. Yunnan province is located at the southwest of China and has rich abundance of mosquitoes. Arbovirus surveillan...
Autores principales: | , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7898981/ https://www.ncbi.nlm.nih.gov/pubmed/33628201 http://dx.doi.org/10.3389/fmicb.2020.591478 |
_version_ | 1783653976137269248 |
---|---|
author | Hameed, Muddassar Wahaab, Abdul Shan, Tongling Wang, Xin Khan, Sawar Di, Di Xiqian, Liu Zhang, Jun-Jie Anwar, Muhammad Naveed Nawaz, Mohsin Li, Beibei Liu, Ke Shao, Donghua Qiu, Yafeng Wei, Jianchao Ma, Zhiyong |
author_facet | Hameed, Muddassar Wahaab, Abdul Shan, Tongling Wang, Xin Khan, Sawar Di, Di Xiqian, Liu Zhang, Jun-Jie Anwar, Muhammad Naveed Nawaz, Mohsin Li, Beibei Liu, Ke Shao, Donghua Qiu, Yafeng Wei, Jianchao Ma, Zhiyong |
author_sort | Hameed, Muddassar |
collection | PubMed |
description | Metagenomic analysis of mosquito-borne and mosquito-specific viruses is useful to understand the viral diversity and for the surveillance of pathogens of medical and veterinary importance. Yunnan province is located at the southwest of China and has rich abundance of mosquitoes. Arbovirus surveillance is not conducted regularly in this province particularly at animal farms, which have public health as well as veterinary importance. Here, we have analyzed 10 pools of mosquitoes belonging to Culex tritaeniorhyncus, Aedes aegypti, Anopheles sinensis, and Armigeres subalbatus species, collected from different animal farms located at Yunnan province of China by using metagenomic next-generation sequencing technique. The generated viral metagenomic data reveal that the viral community matched by the reads was highly diverse and varied in abundance among animal farms, which contained more than 19 viral taxonomic families, specific to vertebrates, invertebrates, fungi, plants, protozoa, and bacteria. Additionally, a large number of viral reads were related to viruses that are non-classified. The viral reads related to animal viruses included parvoviruses, anelloviruses, circoviruses, flaviviruses, rhabdoviruses, and seadornaviruses, which might be taken by mosquitoes from viremic animal hosts during blood feeding. Notably, the presence of viral reads matched with Japanese encephalitis virus, Getah virus, and porcine parvoviruses in mosquitoes collected from different geographic sites suggested a potential circulation of these viruses in their vertebrate hosts. Overall, this study provides a comprehensive knowledge of diverse viral populations present at animal farms of Yunnan province of China, which might be a potential source of diseases for humans and domestic animals. |
format | Online Article Text |
id | pubmed-7898981 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-78989812021-02-23 A Metagenomic Analysis of Mosquito Virome Collected From Different Animal Farms at Yunnan–Myanmar Border of China Hameed, Muddassar Wahaab, Abdul Shan, Tongling Wang, Xin Khan, Sawar Di, Di Xiqian, Liu Zhang, Jun-Jie Anwar, Muhammad Naveed Nawaz, Mohsin Li, Beibei Liu, Ke Shao, Donghua Qiu, Yafeng Wei, Jianchao Ma, Zhiyong Front Microbiol Microbiology Metagenomic analysis of mosquito-borne and mosquito-specific viruses is useful to understand the viral diversity and for the surveillance of pathogens of medical and veterinary importance. Yunnan province is located at the southwest of China and has rich abundance of mosquitoes. Arbovirus surveillance is not conducted regularly in this province particularly at animal farms, which have public health as well as veterinary importance. Here, we have analyzed 10 pools of mosquitoes belonging to Culex tritaeniorhyncus, Aedes aegypti, Anopheles sinensis, and Armigeres subalbatus species, collected from different animal farms located at Yunnan province of China by using metagenomic next-generation sequencing technique. The generated viral metagenomic data reveal that the viral community matched by the reads was highly diverse and varied in abundance among animal farms, which contained more than 19 viral taxonomic families, specific to vertebrates, invertebrates, fungi, plants, protozoa, and bacteria. Additionally, a large number of viral reads were related to viruses that are non-classified. The viral reads related to animal viruses included parvoviruses, anelloviruses, circoviruses, flaviviruses, rhabdoviruses, and seadornaviruses, which might be taken by mosquitoes from viremic animal hosts during blood feeding. Notably, the presence of viral reads matched with Japanese encephalitis virus, Getah virus, and porcine parvoviruses in mosquitoes collected from different geographic sites suggested a potential circulation of these viruses in their vertebrate hosts. Overall, this study provides a comprehensive knowledge of diverse viral populations present at animal farms of Yunnan province of China, which might be a potential source of diseases for humans and domestic animals. Frontiers Media S.A. 2021-02-08 /pmc/articles/PMC7898981/ /pubmed/33628201 http://dx.doi.org/10.3389/fmicb.2020.591478 Text en Copyright © 2021 Hameed, Wahaab, Shan, Wang, Khan, Di, Xiqian, Zhang, Anwar, Nawaz, Li, Liu, Shao, Qiu, Wei and Ma. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Microbiology Hameed, Muddassar Wahaab, Abdul Shan, Tongling Wang, Xin Khan, Sawar Di, Di Xiqian, Liu Zhang, Jun-Jie Anwar, Muhammad Naveed Nawaz, Mohsin Li, Beibei Liu, Ke Shao, Donghua Qiu, Yafeng Wei, Jianchao Ma, Zhiyong A Metagenomic Analysis of Mosquito Virome Collected From Different Animal Farms at Yunnan–Myanmar Border of China |
title | A Metagenomic Analysis of Mosquito Virome Collected From Different Animal Farms at Yunnan–Myanmar Border of China |
title_full | A Metagenomic Analysis of Mosquito Virome Collected From Different Animal Farms at Yunnan–Myanmar Border of China |
title_fullStr | A Metagenomic Analysis of Mosquito Virome Collected From Different Animal Farms at Yunnan–Myanmar Border of China |
title_full_unstemmed | A Metagenomic Analysis of Mosquito Virome Collected From Different Animal Farms at Yunnan–Myanmar Border of China |
title_short | A Metagenomic Analysis of Mosquito Virome Collected From Different Animal Farms at Yunnan–Myanmar Border of China |
title_sort | metagenomic analysis of mosquito virome collected from different animal farms at yunnan–myanmar border of china |
topic | Microbiology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7898981/ https://www.ncbi.nlm.nih.gov/pubmed/33628201 http://dx.doi.org/10.3389/fmicb.2020.591478 |
work_keys_str_mv | AT hameedmuddassar ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT wahaababdul ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT shantongling ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT wangxin ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT khansawar ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT didi ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT xiqianliu ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT zhangjunjie ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT anwarmuhammadnaveed ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT nawazmohsin ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT libeibei ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT liuke ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT shaodonghua ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT qiuyafeng ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT weijianchao ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT mazhiyong ametagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT hameedmuddassar metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT wahaababdul metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT shantongling metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT wangxin metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT khansawar metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT didi metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT xiqianliu metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT zhangjunjie metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT anwarmuhammadnaveed metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT nawazmohsin metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT libeibei metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT liuke metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT shaodonghua metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT qiuyafeng metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT weijianchao metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina AT mazhiyong metagenomicanalysisofmosquitoviromecollectedfromdifferentanimalfarmsatyunnanmyanmarborderofchina |