Cargando…

Phylogeny of Parasitic Parabasalia and Free-Living Relatives Inferred from Conventional Markers vs. Rpb1, a Single-Copy Gene

BACKGROUND: Parabasalia are single-celled eukaryotes (protists) that are mainly comprised of endosymbionts of termites and wood roaches, intestinal commensals, human or veterinary parasites, and free-living species. Phylogenetic comparisons of parabasalids are typically based upon morphological char...

Descripción completa

Detalles Bibliográficos
Autores principales: Malik, Shehre-Banoo, Brochu, Cynthia D., Bilic, Ivana, Yuan, Jing, Hess, Michael, Logsdon, John M., Carlton, Jane M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3111441/
https://www.ncbi.nlm.nih.gov/pubmed/21695260
http://dx.doi.org/10.1371/journal.pone.0020774
_version_ 1782205629636542464
author Malik, Shehre-Banoo
Brochu, Cynthia D.
Bilic, Ivana
Yuan, Jing
Hess, Michael
Logsdon, John M.
Carlton, Jane M.
author_facet Malik, Shehre-Banoo
Brochu, Cynthia D.
Bilic, Ivana
Yuan, Jing
Hess, Michael
Logsdon, John M.
Carlton, Jane M.
author_sort Malik, Shehre-Banoo
collection PubMed
description BACKGROUND: Parabasalia are single-celled eukaryotes (protists) that are mainly comprised of endosymbionts of termites and wood roaches, intestinal commensals, human or veterinary parasites, and free-living species. Phylogenetic comparisons of parabasalids are typically based upon morphological characters and 18S ribosomal RNA gene sequence data (rDNA), while biochemical or molecular studies of parabasalids are limited to a few axenically cultivable parasites. These previous analyses and other studies based on PCR amplification of duplicated protein-coding genes are unable to fully resolve the evolutionary relationships of parabasalids. As a result, genetic studies of Parabasalia lag behind other organisms. PRINCIPAL FINDINGS: Comparing parabasalid EF1α, α-tubulin, enolase and MDH protein-coding genes with information from the Trichomonas vaginalis genome reveals difficulty in resolving the history of species or isolates apart from duplicated genes. A conserved single-copy gene encodes the largest subunit of RNA polymerase II (Rpb1) in T. vaginalis and other eukaryotes. Here we directly sequenced Rpb1 degenerate PCR products from 10 parabasalid genera, including several T. vaginalis isolates and avian isolates, and compared these data by phylogenetic analyses. Rpb1 genes from parabasalids, diplomonads, Parabodo, Diplonema and Percolomonas were all intronless, unlike intron-rich homologs in Naegleria, Jakoba and Malawimonas. CONCLUSIONS/SIGNIFICANCE: The phylogeny of Rpb1 from parasitic and free-living parabasalids, and conserved Rpb1 insertions, support Trichomonadea, Tritrichomonadea, and Hypotrichomonadea as monophyletic groups. These results are consistent with prior analyses of rDNA and GAPDH sequences and ultrastructural data. The Rpb1 phylogenetic tree also resolves species- and isolate-level relationships. These findings, together with the relative ease of Rpb1 isolation, make it an attractive tool for evaluating more extensive relationships within Parabasalia.
format Online
Article
Text
id pubmed-3111441
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-31114412011-06-21 Phylogeny of Parasitic Parabasalia and Free-Living Relatives Inferred from Conventional Markers vs. Rpb1, a Single-Copy Gene Malik, Shehre-Banoo Brochu, Cynthia D. Bilic, Ivana Yuan, Jing Hess, Michael Logsdon, John M. Carlton, Jane M. PLoS One Research Article BACKGROUND: Parabasalia are single-celled eukaryotes (protists) that are mainly comprised of endosymbionts of termites and wood roaches, intestinal commensals, human or veterinary parasites, and free-living species. Phylogenetic comparisons of parabasalids are typically based upon morphological characters and 18S ribosomal RNA gene sequence data (rDNA), while biochemical or molecular studies of parabasalids are limited to a few axenically cultivable parasites. These previous analyses and other studies based on PCR amplification of duplicated protein-coding genes are unable to fully resolve the evolutionary relationships of parabasalids. As a result, genetic studies of Parabasalia lag behind other organisms. PRINCIPAL FINDINGS: Comparing parabasalid EF1α, α-tubulin, enolase and MDH protein-coding genes with information from the Trichomonas vaginalis genome reveals difficulty in resolving the history of species or isolates apart from duplicated genes. A conserved single-copy gene encodes the largest subunit of RNA polymerase II (Rpb1) in T. vaginalis and other eukaryotes. Here we directly sequenced Rpb1 degenerate PCR products from 10 parabasalid genera, including several T. vaginalis isolates and avian isolates, and compared these data by phylogenetic analyses. Rpb1 genes from parabasalids, diplomonads, Parabodo, Diplonema and Percolomonas were all intronless, unlike intron-rich homologs in Naegleria, Jakoba and Malawimonas. CONCLUSIONS/SIGNIFICANCE: The phylogeny of Rpb1 from parasitic and free-living parabasalids, and conserved Rpb1 insertions, support Trichomonadea, Tritrichomonadea, and Hypotrichomonadea as monophyletic groups. These results are consistent with prior analyses of rDNA and GAPDH sequences and ultrastructural data. The Rpb1 phylogenetic tree also resolves species- and isolate-level relationships. These findings, together with the relative ease of Rpb1 isolation, make it an attractive tool for evaluating more extensive relationships within Parabasalia. Public Library of Science 2011-06-09 /pmc/articles/PMC3111441/ /pubmed/21695260 http://dx.doi.org/10.1371/journal.pone.0020774 Text en Malik et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Malik, Shehre-Banoo
Brochu, Cynthia D.
Bilic, Ivana
Yuan, Jing
Hess, Michael
Logsdon, John M.
Carlton, Jane M.
Phylogeny of Parasitic Parabasalia and Free-Living Relatives Inferred from Conventional Markers vs. Rpb1, a Single-Copy Gene
title Phylogeny of Parasitic Parabasalia and Free-Living Relatives Inferred from Conventional Markers vs. Rpb1, a Single-Copy Gene
title_full Phylogeny of Parasitic Parabasalia and Free-Living Relatives Inferred from Conventional Markers vs. Rpb1, a Single-Copy Gene
title_fullStr Phylogeny of Parasitic Parabasalia and Free-Living Relatives Inferred from Conventional Markers vs. Rpb1, a Single-Copy Gene
title_full_unstemmed Phylogeny of Parasitic Parabasalia and Free-Living Relatives Inferred from Conventional Markers vs. Rpb1, a Single-Copy Gene
title_short Phylogeny of Parasitic Parabasalia and Free-Living Relatives Inferred from Conventional Markers vs. Rpb1, a Single-Copy Gene
title_sort phylogeny of parasitic parabasalia and free-living relatives inferred from conventional markers vs. rpb1, a single-copy gene
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3111441/
https://www.ncbi.nlm.nih.gov/pubmed/21695260
http://dx.doi.org/10.1371/journal.pone.0020774
work_keys_str_mv AT malikshehrebanoo phylogenyofparasiticparabasaliaandfreelivingrelativesinferredfromconventionalmarkersvsrpb1asinglecopygene
AT brochucynthiad phylogenyofparasiticparabasaliaandfreelivingrelativesinferredfromconventionalmarkersvsrpb1asinglecopygene
AT bilicivana phylogenyofparasiticparabasaliaandfreelivingrelativesinferredfromconventionalmarkersvsrpb1asinglecopygene
AT yuanjing phylogenyofparasiticparabasaliaandfreelivingrelativesinferredfromconventionalmarkersvsrpb1asinglecopygene
AT hessmichael phylogenyofparasiticparabasaliaandfreelivingrelativesinferredfromconventionalmarkersvsrpb1asinglecopygene
AT logsdonjohnm phylogenyofparasiticparabasaliaandfreelivingrelativesinferredfromconventionalmarkersvsrpb1asinglecopygene
AT carltonjanem phylogenyofparasiticparabasaliaandfreelivingrelativesinferredfromconventionalmarkersvsrpb1asinglecopygene