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Repository series · ncbi-prjna687136

Genomic epidemiology of SARS-CoV-2 in the United Arab Emirates reveals novel insights into the country-specific variation, co-infection and host-dependent RNA editing.

United Arab EmiratesPathogen genomics and infectious diseaseRepository record

The United Arab Emirates is a major business hub with substantial amount of international travel. Like many other countries, it was greatly affected by the COVID-19pandemic since late January 2020, with recurring waves of infection. This study aimed at combining genomic and epidemiological data to unravel the source of SARS-CoV-2introduction, transmission and evolution in the country.We performed meta-transcriptomic sequencing of 1,067 nasopharyngeal swab samples collected from qRT-PCR positive COVID-19 patients in Abu Dhabi, UAE, between May 9th and June 29th 2020. We investigated the genetic diversity and transmission dynamics of the viral population and analyzed the infection and transmission potential of novel genomic clusters. Within-host SARS-CoV-2 genetic variation was analyzed to determine the occurrence and prevalence of multiple infections. Finally, we evaluated innate host responses during the prolonged period of local infection. All globally known SARS-CoV-2 clades were identified within the UAE sequenced strains, with a higher occurrence of European and East Asian clades.We defined 5 subclades based on 11 unique genetic variants within the UAE strains, which were associated with higher viral loads (p<0.001). Multiple infection of different SARS-CoV-2 strains was observed for at least 5% of the patients. We also observed a host-defense mechanism via RNA editing mediated by APOBEC3 rather than ADAR in nasopharyngeal samples. The SARS-CoV-2 epidemic in the UAE was founded by international importation followed by local transmission, leading to prevalent multiple infection and large subclade descendances. While RNA editing mechanisms mutate the viral population, newly arisen genetic variation can contribute to a heavier viral burden. Meta-transcriptomic sequencing can help to determine the transmission patterns of SARS-CoV-2.

Repository interpretation

The accession and its GCC connection are verified. Registration alone does not establish that the broader research programme remains active.

01 / Project overview

What the record establishes.

Geographic scope
United Arab Emirates connection indexed in BioProject metadata
Project type
Repository project
Research domain
Pathogen genomics and infectious disease
Years
2020–
Lifecycle status
repository_recorded
Status basis
Registered in NCBI BioProject on 2020/12/22; operational lifecycle is not asserted.
Status evidence date
2020-12-22
Scale
1 BioProject accession grouped by matching submitter, date, data type and narrative.

02 / Organizations and population

Who and what the project connects.

Lead organizations
G42 Healthcare
Partner organizations
Not stated
Organism / population
Not stated

03 / Data and access

What exists and how it can be reached.

Data types

  • Raw sequence reads
  • Sequencing
  • Genome

Data access

Public repository metadata with linked data where supplied by the submitter

Identifiers

  • BioProjectPRJNA687136

04 / Evidence and provenance

Why the record is included.

Inclusion basis

Exact country-name match in authoritative NCBI BioProject metadata; repeated submissions are grouped into one Atlas series.

Editorial note

Repository verification confirms the accession and regional connection, not whether the broader research programme remains active.

Sources

  1. primary record source Verified 2026-08-15

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