Evolutionary Relationships and Systematics of the Alphaviruses

Partial E1 envelope glycoprotein gene sequences and complete structural polyprotein sequences were used to compare divergence and construct phylogenetic trees for the genus Alphavirus. Tree topologies indicated that the mosquito-borne alphaviruses could have arisen in either the Old or the New World...

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Main Authors: Powers, Ann M., Brault, Aaron C., Shirako, Yukio, Strauss, Ellen G., Kang, Wenli, Strauss, James H., Weaver, Scott C.
Format: Article in Journal/Newspaper
Language:unknown
Published: American Society for Microbiology 2001
Subjects:
Online Access:https://authors.library.caltech.edu/3076/
https://authors.library.caltech.edu/3076/1/POWjvir01.pdf
https://resolver.caltech.edu/CaltechAUTHORS:POWjvir01
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spelling ftcaltechauth:oai:authors.library.caltech.edu:3076 2023-05-15T16:05:18+02:00 Evolutionary Relationships and Systematics of the Alphaviruses Powers, Ann M. Brault, Aaron C. Shirako, Yukio Strauss, Ellen G. Kang, Wenli Strauss, James H. Weaver, Scott C. 2001-11-01 application/pdf https://authors.library.caltech.edu/3076/ https://authors.library.caltech.edu/3076/1/POWjvir01.pdf https://resolver.caltech.edu/CaltechAUTHORS:POWjvir01 unknown American Society for Microbiology https://authors.library.caltech.edu/3076/1/POWjvir01.pdf Powers, Ann M. and Brault, Aaron C. and Shirako, Yukio and Strauss, Ellen G. and Kang, Wenli and Strauss, James H. and Weaver, Scott C. (2001) Evolutionary Relationships and Systematics of the Alphaviruses. Journal of Virology, 75 (21). pp. 10118-10131. ISSN 0022-538X. PMCID PMC114586. https://resolver.caltech.edu/CaltechAUTHORS:POWjvir01 <https://resolver.caltech.edu/CaltechAUTHORS:POWjvir01> Caltech Library Services Article PeerReviewed 2001 ftcaltechauth 2020-04-26T15:52:36Z Partial E1 envelope glycoprotein gene sequences and complete structural polyprotein sequences were used to compare divergence and construct phylogenetic trees for the genus Alphavirus. Tree topologies indicated that the mosquito-borne alphaviruses could have arisen in either the Old or the New World, with at least two transoceanic introductions to account for their current distribution. The time frame for alphavirus diversification could not be estimated because maximum-likelihood analyses indicated that the nucleotide substitution rate varies considerably across sites within the genome. While most trees showed evolutionary relationships consistent with current antigenic complexes and species, several changes to the current classification are proposed. The recently identified fish alphaviruses salmon pancreas disease virus and sleeping disease virus appear to be variants or subtypes of a new alphavirus species. Southern elephant seal virus is also a new alphavirus distantly related to all of the others analyzed. Tonate virus and Venezuelan equine encephalitis virus strain 78V3531 also appear to be distinct alphavirus species based on genetic, antigenic, and ecological criteria. Trocara virus, isolated from mosquitoes in Brazil and Peru, also represents a new species and probably a new alphavirus complex. Article in Journal/Newspaper Elephant Seal Southern Elephant Seal Caltech Authors (California Institute of Technology)
institution Open Polar
collection Caltech Authors (California Institute of Technology)
op_collection_id ftcaltechauth
language unknown
topic Caltech Library Services
spellingShingle Caltech Library Services
Powers, Ann M.
Brault, Aaron C.
Shirako, Yukio
Strauss, Ellen G.
Kang, Wenli
Strauss, James H.
Weaver, Scott C.
Evolutionary Relationships and Systematics of the Alphaviruses
topic_facet Caltech Library Services
description Partial E1 envelope glycoprotein gene sequences and complete structural polyprotein sequences were used to compare divergence and construct phylogenetic trees for the genus Alphavirus. Tree topologies indicated that the mosquito-borne alphaviruses could have arisen in either the Old or the New World, with at least two transoceanic introductions to account for their current distribution. The time frame for alphavirus diversification could not be estimated because maximum-likelihood analyses indicated that the nucleotide substitution rate varies considerably across sites within the genome. While most trees showed evolutionary relationships consistent with current antigenic complexes and species, several changes to the current classification are proposed. The recently identified fish alphaviruses salmon pancreas disease virus and sleeping disease virus appear to be variants or subtypes of a new alphavirus species. Southern elephant seal virus is also a new alphavirus distantly related to all of the others analyzed. Tonate virus and Venezuelan equine encephalitis virus strain 78V3531 also appear to be distinct alphavirus species based on genetic, antigenic, and ecological criteria. Trocara virus, isolated from mosquitoes in Brazil and Peru, also represents a new species and probably a new alphavirus complex.
format Article in Journal/Newspaper
author Powers, Ann M.
Brault, Aaron C.
Shirako, Yukio
Strauss, Ellen G.
Kang, Wenli
Strauss, James H.
Weaver, Scott C.
author_facet Powers, Ann M.
Brault, Aaron C.
Shirako, Yukio
Strauss, Ellen G.
Kang, Wenli
Strauss, James H.
Weaver, Scott C.
author_sort Powers, Ann M.
title Evolutionary Relationships and Systematics of the Alphaviruses
title_short Evolutionary Relationships and Systematics of the Alphaviruses
title_full Evolutionary Relationships and Systematics of the Alphaviruses
title_fullStr Evolutionary Relationships and Systematics of the Alphaviruses
title_full_unstemmed Evolutionary Relationships and Systematics of the Alphaviruses
title_sort evolutionary relationships and systematics of the alphaviruses
publisher American Society for Microbiology
publishDate 2001
url https://authors.library.caltech.edu/3076/
https://authors.library.caltech.edu/3076/1/POWjvir01.pdf
https://resolver.caltech.edu/CaltechAUTHORS:POWjvir01
genre Elephant Seal
Southern Elephant Seal
genre_facet Elephant Seal
Southern Elephant Seal
op_relation https://authors.library.caltech.edu/3076/1/POWjvir01.pdf
Powers, Ann M. and Brault, Aaron C. and Shirako, Yukio and Strauss, Ellen G. and Kang, Wenli and Strauss, James H. and Weaver, Scott C. (2001) Evolutionary Relationships and Systematics of the Alphaviruses. Journal of Virology, 75 (21). pp. 10118-10131. ISSN 0022-538X. PMCID PMC114586. https://resolver.caltech.edu/CaltechAUTHORS:POWjvir01 <https://resolver.caltech.edu/CaltechAUTHORS:POWjvir01>
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