Middle East respiratory syndrome coronavirus quasispecies that include homologues of human isolates revealed through whole-genome analysis and virus cultured from dromedary camels in Saudi Arabia.

Thomas Briese Nischay Mishra Komal Jain Iyad S Zalmout Omar J Jabado William B Karesh Peter Daszak Osama B Mohammed Abdulaziz N Alagaili W Ian Lipkin

Abstract

ABSTRACT Complete Middle East respiratory syndrome coronavirus (MERS-CoV) genome sequences were obtained from nasal swabs of dromedary camels sampled in the Kingdom of Saudi Arabia through direct analysis of nucleic acid extracts or following virus isolation in cell culture. Consensus dromedary MERS-CoV genome sequences were the same with either template source and identical to published human MERS-CoV sequences. However, in contrast to individual human cases, where only clonal genomic sequences are reported, detailed population analyses revealed the presence of more than one genomic variant in individual dromedaries. If humans are truly infected only with clonal virus populations, we must entertain a model for interspecies transmission of MERS-CoV wherein only specific genotypes are capable of passing bottleneck selection. IMPORTANCE In most cases of Middle East respiratory syndrome (MERS), the route for human infection with the causative agent, MERS coronavirus (MERS-CoV), is unknown. Antibodies to and viral nucleic acids of MERS-CoV have been found in dromedaries, suggesting the possibility that they may serve as a reservoir or vector for human infection. However, neither whole viral genomic sequence nor infectious virus has been isolated from dromedaries or other animals in Saudi Arabia. Here, we report recovery of MERS-CoV from nasal swabs of dromedaries, demonstrate that MERS-CoV whole-genome consensus sequences from dromedaries and humans are indistinguishable, and show that dromedaries can be simultaneously infected with more than one MERS-CoV. Together with data indicating widespread dromedary infection in the Kingdom of Saudi Arabia, these findings support the plausibility of a role for dromedaries in human infection.

Supporting text Virus Host Location
Genome, Viral 317 Animals 1948 Camelus 39 Computational Biology 15 Coronavirus Infections 171 High-Throughput Nucleotide Sequencing 39 Humans 1440 Middle East Respiratory Syndrome Coronavirus 68 Molecular Sequence Data 160 Phylogeny 805 RNA, Viral 193 Saudi Arabia 13

Evidence records

5 total
Zoonotic Surveillance
3 records · 3 evidence types
Evidence type
1 records
OVE1706
Key finding

Infectious Middle East respiratory syndrome coronavirus (MERS-CoV) was recovered and cultured from nasal swabs collected from dromedary camels in Saudi Arabia.

Virus
Host
Location
Not specified
Supporting text

Complete Middle East respiratory syndrome coronavirus (MERS-CoV) genome sequences were obtained from nasal swabs of dromedary camels sampled in the Kingdom of Saudi Arabia through direct analysis of nucleic acid extracts or following virus isolation in cell culture.

Sample type
nasal swabs
Evidence type
1 records
OVE1709
Key finding

MERS-CoV genomes were detected in nucleic acid extracts of nasal swabs from dromedary camels in the Kingdom of Saudi Arabia.

Virus
Host
Location
Supporting text

Complete Middle East respiratory syndrome coronavirus (MERS-CoV) genome sequences were obtained from nasal swabs of dromedary camels sampled in the Kingdom of Saudi Arabia through direct analysis of nucleic acid extracts.

Method
direct analysis of nucleic acid extracts | whole-genome sequencing
Sample type
nasal swabs | nucleic acid extracts
Geographic raw
Kingdom of Saudi Arabia
Country inferred
SAU
Evidence type
1 records
OVE1710
Key finding

MERS-CoV whole-genome sequences and infectious virus were recovered from nasal swabs of dromedary camels in Saudi Arabia, supporting their plausibility as a reservoir linked to human infection.

Virus
Host
Location
Supporting text

Here, we report recovery of MERS-CoV from nasal swabs of dromedaries, demonstrate that MERS-CoV whole-genome consensus sequences from dromedaries and humans are indistinguishable, and show that dromedaries can be simultaneously infected with more than one MERS-CoV. Together with data indicating widespread dromedary infection in the Kingdom of Saudi Arabia, these findings support the plausibility of a role for dromedaries in human infection.

Method
whole-genome sequencing | virus isolation in cell culture | nucleic acid extract analysis
Sample type
nasal swabs
Geographic raw
Kingdom of Saudi Arabia
Country inferred
SAU
Genomic Evolution
2 records · 1 evidence types
Evidence type
2 records
OVE1707
Key finding

Whole-genome phylogenetic comparison showed that dromedary MERS-CoV consensus sequences were identical to published human MERS-CoV genomes.

Virus
Host
Location
Not specified
Supporting text

Consensus dromedary MERS-CoV genome sequences were the same with either template source and identical to published human MERS-CoV sequences.

Genes or proteins
whole genome
Analysis methods
whole-genome comparison | phylogenetic identity assessment
OVE1708
Key finding

Population-level genome analysis revealed multiple distinct MERS-CoV variants coexisting within individual dromedary camels.

Virus
Host
Location
Not specified
Supporting text

Detailed population analyses revealed the presence of more than one genomic variant in individual dromedaries.

Genes or proteins
whole genome
Analysis methods
population genomic analysis | variant comparison