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The Delta variant wave in Tunisia: Genetic diversity, spatio-temporal distribution and evidence of the spread of a divergent AY.122 sub-lineage

INTRODUCTION: The Delta variant posed an increased risk to global public health and rapidly replaced the pre-existent variants worldwide. In this study, the genetic diversity and the spatio-temporal dynamics of 662 SARS-CoV2 genomes obtained during the Delta wave across Tunisia were investigated. ME...

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Autores principales: Haddad-Boubaker, Sondes, Arbi, Marwa, Souiai, Oussema, Chouikha, Anissa, Fares, Wasfi, Edington, Kate, Sims, Sam, Camma, Cesare, Lorusso, Alessio, Diagne, Moussa Moïse, Diallo, Amadou, Boubaker, Ilhem Boutiba Ben, Ferjani, Sana, Mastouri, Maha, Mhalla, Salma, Karray, Hela, Gargouri, Saba, Bahri, Olfa, Trabelsi, Abdelhalim, Kallala, Ouafa, Hannachi, Naila, Chaabouni, Yassine, Smaoui, Hanen, Meftah, Khaoula, Bouhalila, Sophia Besbes, Foughali, Soumaya, Zribi, Mariem, Lamari, Asma, Touzi, Henda, Safer, Mouna, Alaya, Nissaf Ben, Kahla, Alia Ben, Gdoura, Mariem, Triki, Henda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9846204/
https://www.ncbi.nlm.nih.gov/pubmed/36684874
http://dx.doi.org/10.3389/fpubh.2022.990832
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author Haddad-Boubaker, Sondes
Arbi, Marwa
Souiai, Oussema
Chouikha, Anissa
Fares, Wasfi
Edington, Kate
Sims, Sam
Camma, Cesare
Lorusso, Alessio
Diagne, Moussa Moïse
Diallo, Amadou
Boubaker, Ilhem Boutiba Ben
Ferjani, Sana
Mastouri, Maha
Mhalla, Salma
Karray, Hela
Gargouri, Saba
Bahri, Olfa
Trabelsi, Abdelhalim
Kallala, Ouafa
Hannachi, Naila
Chaabouni, Yassine
Smaoui, Hanen
Meftah, Khaoula
Bouhalila, Sophia Besbes
Foughali, Soumaya
Zribi, Mariem
Lamari, Asma
Touzi, Henda
Safer, Mouna
Alaya, Nissaf Ben
Kahla, Alia Ben
Gdoura, Mariem
Triki, Henda
author_facet Haddad-Boubaker, Sondes
Arbi, Marwa
Souiai, Oussema
Chouikha, Anissa
Fares, Wasfi
Edington, Kate
Sims, Sam
Camma, Cesare
Lorusso, Alessio
Diagne, Moussa Moïse
Diallo, Amadou
Boubaker, Ilhem Boutiba Ben
Ferjani, Sana
Mastouri, Maha
Mhalla, Salma
Karray, Hela
Gargouri, Saba
Bahri, Olfa
Trabelsi, Abdelhalim
Kallala, Ouafa
Hannachi, Naila
Chaabouni, Yassine
Smaoui, Hanen
Meftah, Khaoula
Bouhalila, Sophia Besbes
Foughali, Soumaya
Zribi, Mariem
Lamari, Asma
Touzi, Henda
Safer, Mouna
Alaya, Nissaf Ben
Kahla, Alia Ben
Gdoura, Mariem
Triki, Henda
author_sort Haddad-Boubaker, Sondes
collection PubMed
description INTRODUCTION: The Delta variant posed an increased risk to global public health and rapidly replaced the pre-existent variants worldwide. In this study, the genetic diversity and the spatio-temporal dynamics of 662 SARS-CoV2 genomes obtained during the Delta wave across Tunisia were investigated. METHODS: Viral whole genome and partial S-segment sequencing was performed using Illumina and Sanger platforms, respectively and lineage assignemnt was assessed using Pangolin version 1.2.4 and scorpio version 3.4.X. Phylogenetic and phylogeographic analyses were achieved using IQ-Tree and Beast programs. RESULTS: The age distribution of the infected cases showed a large peak between 25 to 50 years. Twelve Delta sub-lineages were detected nation-wide with AY.122 being the predominant variant representing 94.6% of sequences. AY.122 sequences were highly related and shared the amino-acid change ORF1a:A498V, the synonymous mutations 2746T>C, 3037C>T, 8986C>T, 11332A>G in ORF1a and 23683C>T in the S gene with respect to the Wuhan reference genome (NC_045512.2). Spatio-temporal analysis indicates that the larger cities of Nabeul, Tunis and Kairouan constituted epicenters for the AY.122 sub-lineage and subsequent dispersion to the rest of the country. DISCUSSION: This study adds more knowledge about the Delta variant and sub-variants distribution worldwide by documenting genomic and epidemiological data from Tunisia, a North African region. Such results may be helpful to the understanding of future COVID-19 waves and variants.
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spelling pubmed-98462042023-01-19 The Delta variant wave in Tunisia: Genetic diversity, spatio-temporal distribution and evidence of the spread of a divergent AY.122 sub-lineage Haddad-Boubaker, Sondes Arbi, Marwa Souiai, Oussema Chouikha, Anissa Fares, Wasfi Edington, Kate Sims, Sam Camma, Cesare Lorusso, Alessio Diagne, Moussa Moïse Diallo, Amadou Boubaker, Ilhem Boutiba Ben Ferjani, Sana Mastouri, Maha Mhalla, Salma Karray, Hela Gargouri, Saba Bahri, Olfa Trabelsi, Abdelhalim Kallala, Ouafa Hannachi, Naila Chaabouni, Yassine Smaoui, Hanen Meftah, Khaoula Bouhalila, Sophia Besbes Foughali, Soumaya Zribi, Mariem Lamari, Asma Touzi, Henda Safer, Mouna Alaya, Nissaf Ben Kahla, Alia Ben Gdoura, Mariem Triki, Henda Front Public Health Public Health INTRODUCTION: The Delta variant posed an increased risk to global public health and rapidly replaced the pre-existent variants worldwide. In this study, the genetic diversity and the spatio-temporal dynamics of 662 SARS-CoV2 genomes obtained during the Delta wave across Tunisia were investigated. METHODS: Viral whole genome and partial S-segment sequencing was performed using Illumina and Sanger platforms, respectively and lineage assignemnt was assessed using Pangolin version 1.2.4 and scorpio version 3.4.X. Phylogenetic and phylogeographic analyses were achieved using IQ-Tree and Beast programs. RESULTS: The age distribution of the infected cases showed a large peak between 25 to 50 years. Twelve Delta sub-lineages were detected nation-wide with AY.122 being the predominant variant representing 94.6% of sequences. AY.122 sequences were highly related and shared the amino-acid change ORF1a:A498V, the synonymous mutations 2746T>C, 3037C>T, 8986C>T, 11332A>G in ORF1a and 23683C>T in the S gene with respect to the Wuhan reference genome (NC_045512.2). Spatio-temporal analysis indicates that the larger cities of Nabeul, Tunis and Kairouan constituted epicenters for the AY.122 sub-lineage and subsequent dispersion to the rest of the country. DISCUSSION: This study adds more knowledge about the Delta variant and sub-variants distribution worldwide by documenting genomic and epidemiological data from Tunisia, a North African region. Such results may be helpful to the understanding of future COVID-19 waves and variants. Frontiers Media S.A. 2023-01-04 /pmc/articles/PMC9846204/ /pubmed/36684874 http://dx.doi.org/10.3389/fpubh.2022.990832 Text en Copyright © 2023 Haddad-Boubaker, Arbi, Souiai, Chouikha, Fares, Edington, Sims, Camma, Lorusso, Diagne, Diallo, Boubaker, Ferjani, Mastouri, Mhalla, Karray, Gargouri, Bahri, Trabelsi, Kallala, Hannachi, Chaabouni, Smaoui, Meftah, Bouhalila, Foughali, Zribi, Lamari, Touzi, Safer, Alaya, Kahla, Gdoura and Triki. https://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 Public Health
Haddad-Boubaker, Sondes
Arbi, Marwa
Souiai, Oussema
Chouikha, Anissa
Fares, Wasfi
Edington, Kate
Sims, Sam
Camma, Cesare
Lorusso, Alessio
Diagne, Moussa Moïse
Diallo, Amadou
Boubaker, Ilhem Boutiba Ben
Ferjani, Sana
Mastouri, Maha
Mhalla, Salma
Karray, Hela
Gargouri, Saba
Bahri, Olfa
Trabelsi, Abdelhalim
Kallala, Ouafa
Hannachi, Naila
Chaabouni, Yassine
Smaoui, Hanen
Meftah, Khaoula
Bouhalila, Sophia Besbes
Foughali, Soumaya
Zribi, Mariem
Lamari, Asma
Touzi, Henda
Safer, Mouna
Alaya, Nissaf Ben
Kahla, Alia Ben
Gdoura, Mariem
Triki, Henda
The Delta variant wave in Tunisia: Genetic diversity, spatio-temporal distribution and evidence of the spread of a divergent AY.122 sub-lineage
title The Delta variant wave in Tunisia: Genetic diversity, spatio-temporal distribution and evidence of the spread of a divergent AY.122 sub-lineage
title_full The Delta variant wave in Tunisia: Genetic diversity, spatio-temporal distribution and evidence of the spread of a divergent AY.122 sub-lineage
title_fullStr The Delta variant wave in Tunisia: Genetic diversity, spatio-temporal distribution and evidence of the spread of a divergent AY.122 sub-lineage
title_full_unstemmed The Delta variant wave in Tunisia: Genetic diversity, spatio-temporal distribution and evidence of the spread of a divergent AY.122 sub-lineage
title_short The Delta variant wave in Tunisia: Genetic diversity, spatio-temporal distribution and evidence of the spread of a divergent AY.122 sub-lineage
title_sort delta variant wave in tunisia: genetic diversity, spatio-temporal distribution and evidence of the spread of a divergent ay.122 sub-lineage
topic Public Health
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9846204/
https://www.ncbi.nlm.nih.gov/pubmed/36684874
http://dx.doi.org/10.3389/fpubh.2022.990832
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