Author: Ba Abduallah, Mohamed M.; Hemida, Maged Gomaa
Title: Comparative analysis of the genome structure and organization of the Middle East respiratory syndrome coronavirus (MERSâ€CoV) 2012 to 2019 revealing evidence for virus strain barcoding, zoonotic transmission, and selection pressure Cord-id: 7v8xuicg Document date: 2020_8_17
ID: 7v8xuicg
Snippet: The Middle East respiratory syndrome coronavirus (MERSâ€CoV) emerged in late 2012 in Saudi Arabia. For this study, we conducted a largeâ€scale comparative genome study of MERSâ€CoV from both human and dromedary camels from 2012 to 2019 to map any genetic changes that emerged in the past 8 years. We downloaded 1309 submissions, including 308 fullâ€length genome sequences of MERSâ€CoV available in GenBank from 2012 to 2019. We used bioinformatics tools to describe the genome structure and org
Document: The Middle East respiratory syndrome coronavirus (MERSâ€CoV) emerged in late 2012 in Saudi Arabia. For this study, we conducted a largeâ€scale comparative genome study of MERSâ€CoV from both human and dromedary camels from 2012 to 2019 to map any genetic changes that emerged in the past 8 years. We downloaded 1309 submissions, including 308 fullâ€length genome sequences of MERSâ€CoV available in GenBank from 2012 to 2019. We used bioinformatics tools to describe the genome structure and organization of the virus and to map the most important motifs within various regions/genes throughout the genome over the past 8 years. We also monitored variations/mutations among these sequences since its emergence. Our phylogenetic analyses suggest that the cluster within African camels is derived by S gene. We identified some prominent motifs within the ORF1ab, S gene and ORFâ€5, which may be used for barcoding the African camel lineages of MERSâ€CoV. Furthermore, we mapped some sequence patterns that support the zoonotic origin of the virus from dromedary camels. Other sequences identified selection pressures, particularly within the N gene and the 5′ UTR. Further studies are required for careful monitoring of the MERSâ€CoV genome to identify any potential significant mutations in the future.
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