Phylogenetic analysis of the full-length SARS-CoV sequences: evidence for phylogenetic discordance in three genomic regions.

The origin of the severe acute respiratory syndrome-coronavirus (SARS-CoV) remains unclear. Evidence based on Bayesian scanning plots and phylogenetic analysis using maximum likelihood (ML) and Bayesian methods indicates that SARS-CoV, for the largest part of the genome ( approximately 80%), is more...

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Main Authors: Magiorkinis, G, Magiorkinis, E, Paraskevis, D, Vandamme, A, Van Ranst, M, Moulton, V, Hatzakis, A
Format: Journal article
Language:English
Published: 2004
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author Magiorkinis, G
Magiorkinis, E
Paraskevis, D
Vandamme, A
Van Ranst, M
Moulton, V
Hatzakis, A
author_facet Magiorkinis, G
Magiorkinis, E
Paraskevis, D
Vandamme, A
Van Ranst, M
Moulton, V
Hatzakis, A
author_sort Magiorkinis, G
collection OXFORD
description The origin of the severe acute respiratory syndrome-coronavirus (SARS-CoV) remains unclear. Evidence based on Bayesian scanning plots and phylogenetic analysis using maximum likelihood (ML) and Bayesian methods indicates that SARS-CoV, for the largest part of the genome ( approximately 80%), is more closely related to Group II coronaviruses sequences, whereas in three regions in the ORF1ab gene it shows no apparent similarity to any of the previously characterized groups of coronaviruses. There is discordant phylogenetic clustering of SARS-CoV and coronaviruses sequences, throughout the genome, compatible with either ancient recombination events or altered evolutionary rates in different lineages, or a combination of both.
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spelling oxford-uuid:aa90d96b-5560-4808-ba70-301325f008d82022-03-27T03:16:04ZPhylogenetic analysis of the full-length SARS-CoV sequences: evidence for phylogenetic discordance in three genomic regions.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:aa90d96b-5560-4808-ba70-301325f008d8EnglishSymplectic Elements at Oxford2004Magiorkinis, GMagiorkinis, EParaskevis, DVandamme, AVan Ranst, MMoulton, VHatzakis, AThe origin of the severe acute respiratory syndrome-coronavirus (SARS-CoV) remains unclear. Evidence based on Bayesian scanning plots and phylogenetic analysis using maximum likelihood (ML) and Bayesian methods indicates that SARS-CoV, for the largest part of the genome ( approximately 80%), is more closely related to Group II coronaviruses sequences, whereas in three regions in the ORF1ab gene it shows no apparent similarity to any of the previously characterized groups of coronaviruses. There is discordant phylogenetic clustering of SARS-CoV and coronaviruses sequences, throughout the genome, compatible with either ancient recombination events or altered evolutionary rates in different lineages, or a combination of both.
spellingShingle Magiorkinis, G
Magiorkinis, E
Paraskevis, D
Vandamme, A
Van Ranst, M
Moulton, V
Hatzakis, A
Phylogenetic analysis of the full-length SARS-CoV sequences: evidence for phylogenetic discordance in three genomic regions.
title Phylogenetic analysis of the full-length SARS-CoV sequences: evidence for phylogenetic discordance in three genomic regions.
title_full Phylogenetic analysis of the full-length SARS-CoV sequences: evidence for phylogenetic discordance in three genomic regions.
title_fullStr Phylogenetic analysis of the full-length SARS-CoV sequences: evidence for phylogenetic discordance in three genomic regions.
title_full_unstemmed Phylogenetic analysis of the full-length SARS-CoV sequences: evidence for phylogenetic discordance in three genomic regions.
title_short Phylogenetic analysis of the full-length SARS-CoV sequences: evidence for phylogenetic discordance in three genomic regions.
title_sort phylogenetic analysis of the full length sars cov sequences evidence for phylogenetic discordance in three genomic regions
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