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March 19, 2026BMC Infectious Diseases0 citationsOpen Access

Genome characterization of the SARS-CoV-2 omicron in Cameroon

CMChavely Gwladys MonameleLELoique Landry Messanga EssengueMMMoise Henri Moumbeket-Yifomnjou

Key Points

  • The study aims to describe the genomic characteristics of SARS-CoV-2 omicron sequences from Cameroon and their implications.
  • Retrospective analysis of publicly available SARS-CoV-2 sequences from GISAID
  • Retrieval of full-length omicron sequences from Cameroon
  • Phylogenetic analyses using Nextstrain SARS-CoV-2 Workflow
  • Mutation analysis with Wuhan-Hu-1/2019 strain as reference
  • Analyzed 1,428 omicron sequences revealing eleven variants
  • BA.1 lineage was the most prevalent at 45.0%
  • All lineages contained mutations linked to neutralizing antibody evasion
  • JN.1 lineage displayed the highest mutation count
  • Findings underscore the importance of monitoring omicron variants for vaccine strategy adaptation

Abstract

The omicron lineage has been declared the fifth variant of concern (VOC) by the World Health Organization (WHO). This study aims to describe the genomic characteristics of omicron sequences from Cameroon and to discuss the potential implications of identified mutations for viral evolution and immune escape, based on existing literature. This study is a retrospective analysis of publicly available SARS-CoV-2 sequences from Cameroon submitted to GISAID (Global Initiative on Sharing Avian Influenza Data). Full-length omicron sequences from across Cameroon were retrieved from the GISAID database. Phylogenetic analyses were conducted using Nextstrain SARS-CoV-2 Workflow version 8.2.0, and mutation analysis was performed using the Nextstrain web tool, with the Wuhan-Hu-1/2019 strain as a reference. A total of 1,428 omicron sequences were analyzed, revealing eleven variants: BA.1 lineage (45.0%), B.1.1.529 (0.2%), BA.2 (7.7%), BA.4 (6.5%), BA.5 (16.3%), BE (12.2%), BF (6.3%), BN.2 (0.1%), BQ.1 (3.7%), XBB (0.5%) and JN.1 (1.5%). The sequences exhibited high number of mutations in the spike gene, with the JN.1 lineage showing the highest mutation count. All lineages contained mutations associated with neutralizing antibody evasion, including R346T, K417N, G446S, E484A, or Q493R. Ongoing monitoring of omicron lineages is crucial to detect emerging variants and adapt vaccine strategies. The significant mutations, particularly in the JN.1 lineage warrant further investigation to assess their potential impact on transmissibility or immune escape. Not applicable.

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Cite This Study

Monamele et al. (2026) studied this question.

synapsesocial.com/papers/69bb91c7496e729e6297f372https://doi.org/10.1186/s12879-026-13029-8
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