Whole-Genome Sequencing of Mycobacterium tuberculosis in Lebanon: Updated Genomic Insights

Objectives Lebanon is a low-burden tuberculosis (TB) country with a complex demographic context shaped by migration, socioeconomic instability, and recent healthcare disruptions. We aimed to characterize the population structure, drug resistance, and transmission dynamics of Mycobacterium tuberculosis using whole-genome sequencing (WGS). Methods WGS was performed on 218 M. tuberculosis isolates collected in Lebanon between 2018 and 2024, of which 196 passed quality control. TB-Profiler identified lineages and resistance-associated mutations, with results compared against available phenotypic drug susceptibility testing (DST) and line-probe assays (LPA). TB-Annotator provided high-resolution sub-lineage classification, phylogenomic contextualization within a global MTB dataset, and identification of genomic clusters. Results Lineage 4 predominated (71.4%), followed by Lineage 3 (15.3%), Lineage 2 (6.6%), and Lineage 1 (6.1%), with a single rare Lineage 7 isolate. Resistance-associated mutations were identified in 41.3% of isolates, including MDR-TB (7.1%) and pre-XDR-TB (2.6%). WGS-based resistance prediction showed high concordance (91.8%–100%) with phenotypic DST and LPA. Fourteen genomic clusters included 29/195 isolates (14.9%); incorporation of publicly available Lebanese genomes identified additional Lineage 4-associated clusters, supporting ongoing local transmission. Conclusion This nationwide WGS study revealed a highly diverse MTB population in Lebanon and supports the integration of WGS into routine TB surveillance and control activities.

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Publication Details

Journal
International Journal of Infectious Diseases
Published
2026-10-01
DOI
https://doi.org/10.1016/j.ijid.2026.109155
Primary Topic
Tuberculosis Research and Epidemiology
Type
article
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article

Whole-Genome Sequencing of Mycobacterium tuberculosis in Lebanon: Updated Genomic Insights

Zeina Awad, Christophe Sola, Camille Allam, Marianne Abifadel et al.
International Journal of Infectious Diseases
Tuberculosis Research and Epidemiology
article

Whole-Genome Sequencing of Mycobacterium tuberculosis in Lebanon: Updated Genomic Insights

Zeina Awad, Christophe Sola, Camille Allam, Marianne Abifadel, Hiam Yaacoub, Nicolas Godron, Josette Najjar-Pellet, Laurent Raskine, Emmanuelle Cambau, Marianne Antar Soutou, Sukaina Basma, Sirine Abou Ismail, Clement Lecarpentier, Laurice Tabet, Danielle Chaaya, Kevin LA
article en

Abstract

Objectives Lebanon is a low-burden tuberculosis (TB) country with a complex demographic context shaped by migration, socioeconomic instability, and recent healthcare disruptions. We aimed to characterize the population structure, drug resistance, and transmission dynamics of Mycobacterium tuberculosis using whole-genome sequencing (WGS). Methods WGS was performed on 218 M. tuberculosis isolates collected in Lebanon between 2018 and 2024, of which 196 passed quality control. TB-Profiler identified lineages and resistance-associated mutations, with results compared against available phenotypic drug susceptibility testing (DST) and line-probe assays (LPA). TB-Annotator provided high-resolution sub-lineage classification, phylogenomic contextualization within a global MTB dataset, and identification of genomic clusters. Results Lineage 4 predominated (71.4%), followed by Lineage 3 (15.3%), Lineage 2 (6.6%), and Lineage 1 (6.1%), with a single rare Lineage 7 isolate. Resistance-associated mutations were identified in 41.3% of isolates, including MDR-TB (7.1%) and pre-XDR-TB (2.6%). WGS-based resistance prediction showed high concordance (91.8%–100%) with phenotypic DST and LPA. Fourteen genomic clusters included 29/195 isolates (14.9%); incorporation of publicly available Lebanese genomes identified additional Lineage 4-associated clusters, supporting ongoing local transmission. Conclusion This nationwide WGS study revealed a highly diverse MTB population in Lebanon and supports the integration of WGS into routine TB surveillance and control activities.

International Journal of Infectious Diseases
Inserm (FR), Délégation Paris 7 (FR), Saint Joseph University (LB), Université Paris Cité (FR), Université Paris-Saclay (FR), Sorbonne Université (FR), Sorbonne Paris Cité (FR), Assistance Publique – Hôpitaux de Paris (FR), Ministry of Public Health (LB), Fondation Mérieux (FR), Laboratoire National de Référence (MA), CEA Paris-Saclay (FR), Hôpital Bichat-Claude-Bernard (FR), Université Marie et Louis Pasteur (FR)
Openalex Percentile: Top 12%
Tuberculosis Research and Epidemiology
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