Cargando…

The systematics of Echinorhynchus Zoega in Müller, 1776 (Acanthocephala, Echinorhynchidae) elucidated by nuclear and mitochondrial sequence data from eight European taxa

Abstract. The acanthocephalan genus Echinorhynchus Zoega in Müller, 1776 (sensu Yamaguti 1963) is a large and widespread group of parasites of teleost fish and malacostracan crustaceans, distributed from the Arctic to the Antarctic in habitats ranging from freshwaters to the deep-sea. A total of 52...

Descripción completa

Detalles Bibliográficos
Autores principales: Wayland, Matthew T., Vainio, Jouni K., Gibson, David I., Herniou, Elisabeth A., Littlewood, D. Timothy J., Väinölä, Risto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Pensoft Publishers 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4361782/
https://www.ncbi.nlm.nih.gov/pubmed/25829840
http://dx.doi.org/10.3897/zookeys.484.9132
_version_ 1782361704716304384
author Wayland, Matthew T.
Vainio, Jouni K.
Gibson, David I.
Herniou, Elisabeth A.
Littlewood, D. Timothy J.
Väinölä, Risto
author_facet Wayland, Matthew T.
Vainio, Jouni K.
Gibson, David I.
Herniou, Elisabeth A.
Littlewood, D. Timothy J.
Väinölä, Risto
author_sort Wayland, Matthew T.
collection PubMed
description Abstract. The acanthocephalan genus Echinorhynchus Zoega in Müller, 1776 (sensu Yamaguti 1963) is a large and widespread group of parasites of teleost fish and malacostracan crustaceans, distributed from the Arctic to the Antarctic in habitats ranging from freshwaters to the deep-sea. A total of 52 species are currently recognised based on the conventional morphological species concept; however, the true diversity in the genus is masked by cryptic speciation. The considerable diversity within Echinorhynchus is an argument for subdividing the genus if monophyletic groups with supporting morphological characters can be identified. With this objective in mind, partial sequences of two genes with different rates of evolution and patterns of inheritance (nuclear 28S rRNA and mitochondrial cytochrome c oxidase subunit I) were used to infer the phylogenetic relationships among eight taxa of Echinorhynchus. These included representatives of each of three genus group taxa proposed in a controversial revision of the genus based on cement gland pattern, namely Echinorhynchus (sensu stricto), Metechinorhynchus Petrochenko, 1956 and Pseudoechinorhynchus Petrochenko, 1956. These groupings have previously been rejected by some authorities, because the diagnostic character is poorly defined; this study shows that Echinorhynchus (sensu stricto) and Metechinorhynchus are not natural, monophyletic groups. A revision of Echinorhynchus will require tandem molecular phylogenetic and morphological analyses of a larger sample of taxa, but this study has identified two morhological characters that might potentially be used to define new genera. The estimated phylogeny also provides insight into the zoogeographical history of Echinorhynchus spp. We postulate that the ancestral Echinorhynchus had a freshwater origin and the genus subsequently invaded the sea, probably several times. The freshwater taxa of the Echinorhynchus bothniensis Zdzitowiecki & Valtonen, 1987 clade may represent a reinvasion of freshwater by one or more ancestral marine species.
format Online
Article
Text
id pubmed-4361782
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Pensoft Publishers
record_format MEDLINE/PubMed
spelling pubmed-43617822015-03-31 The systematics of Echinorhynchus Zoega in Müller, 1776 (Acanthocephala, Echinorhynchidae) elucidated by nuclear and mitochondrial sequence data from eight European taxa Wayland, Matthew T. Vainio, Jouni K. Gibson, David I. Herniou, Elisabeth A. Littlewood, D. Timothy J. Väinölä, Risto Zookeys Research Article Abstract. The acanthocephalan genus Echinorhynchus Zoega in Müller, 1776 (sensu Yamaguti 1963) is a large and widespread group of parasites of teleost fish and malacostracan crustaceans, distributed from the Arctic to the Antarctic in habitats ranging from freshwaters to the deep-sea. A total of 52 species are currently recognised based on the conventional morphological species concept; however, the true diversity in the genus is masked by cryptic speciation. The considerable diversity within Echinorhynchus is an argument for subdividing the genus if monophyletic groups with supporting morphological characters can be identified. With this objective in mind, partial sequences of two genes with different rates of evolution and patterns of inheritance (nuclear 28S rRNA and mitochondrial cytochrome c oxidase subunit I) were used to infer the phylogenetic relationships among eight taxa of Echinorhynchus. These included representatives of each of three genus group taxa proposed in a controversial revision of the genus based on cement gland pattern, namely Echinorhynchus (sensu stricto), Metechinorhynchus Petrochenko, 1956 and Pseudoechinorhynchus Petrochenko, 1956. These groupings have previously been rejected by some authorities, because the diagnostic character is poorly defined; this study shows that Echinorhynchus (sensu stricto) and Metechinorhynchus are not natural, monophyletic groups. A revision of Echinorhynchus will require tandem molecular phylogenetic and morphological analyses of a larger sample of taxa, but this study has identified two morhological characters that might potentially be used to define new genera. The estimated phylogeny also provides insight into the zoogeographical history of Echinorhynchus spp. We postulate that the ancestral Echinorhynchus had a freshwater origin and the genus subsequently invaded the sea, probably several times. The freshwater taxa of the Echinorhynchus bothniensis Zdzitowiecki & Valtonen, 1987 clade may represent a reinvasion of freshwater by one or more ancestral marine species. Pensoft Publishers 2015-02-26 /pmc/articles/PMC4361782/ /pubmed/25829840 http://dx.doi.org/10.3897/zookeys.484.9132 Text en Matthew T. Wayland, Jouni K. Vainio, David I. Gibson, Elisabeth A. Herniou, D. Timothy J. Littlewood, Risto Väinölä http://creativecommons.org/licenses/by/4.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (CC BY 4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Wayland, Matthew T.
Vainio, Jouni K.
Gibson, David I.
Herniou, Elisabeth A.
Littlewood, D. Timothy J.
Väinölä, Risto
The systematics of Echinorhynchus Zoega in Müller, 1776 (Acanthocephala, Echinorhynchidae) elucidated by nuclear and mitochondrial sequence data from eight European taxa
title The systematics of Echinorhynchus Zoega in Müller, 1776 (Acanthocephala, Echinorhynchidae) elucidated by nuclear and mitochondrial sequence data from eight European taxa
title_full The systematics of Echinorhynchus Zoega in Müller, 1776 (Acanthocephala, Echinorhynchidae) elucidated by nuclear and mitochondrial sequence data from eight European taxa
title_fullStr The systematics of Echinorhynchus Zoega in Müller, 1776 (Acanthocephala, Echinorhynchidae) elucidated by nuclear and mitochondrial sequence data from eight European taxa
title_full_unstemmed The systematics of Echinorhynchus Zoega in Müller, 1776 (Acanthocephala, Echinorhynchidae) elucidated by nuclear and mitochondrial sequence data from eight European taxa
title_short The systematics of Echinorhynchus Zoega in Müller, 1776 (Acanthocephala, Echinorhynchidae) elucidated by nuclear and mitochondrial sequence data from eight European taxa
title_sort systematics of echinorhynchus zoega in müller, 1776 (acanthocephala, echinorhynchidae) elucidated by nuclear and mitochondrial sequence data from eight european taxa
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4361782/
https://www.ncbi.nlm.nih.gov/pubmed/25829840
http://dx.doi.org/10.3897/zookeys.484.9132
work_keys_str_mv AT waylandmatthewt thesystematicsofechinorhynchuszoegainmuller1776acanthocephalaechinorhynchidaeelucidatedbynuclearandmitochondrialsequencedatafromeighteuropeantaxa
AT vainiojounik thesystematicsofechinorhynchuszoegainmuller1776acanthocephalaechinorhynchidaeelucidatedbynuclearandmitochondrialsequencedatafromeighteuropeantaxa
AT gibsondavidi thesystematicsofechinorhynchuszoegainmuller1776acanthocephalaechinorhynchidaeelucidatedbynuclearandmitochondrialsequencedatafromeighteuropeantaxa
AT herniouelisabetha thesystematicsofechinorhynchuszoegainmuller1776acanthocephalaechinorhynchidaeelucidatedbynuclearandmitochondrialsequencedatafromeighteuropeantaxa
AT littlewooddtimothyj thesystematicsofechinorhynchuszoegainmuller1776acanthocephalaechinorhynchidaeelucidatedbynuclearandmitochondrialsequencedatafromeighteuropeantaxa
AT vainolaristo thesystematicsofechinorhynchuszoegainmuller1776acanthocephalaechinorhynchidaeelucidatedbynuclearandmitochondrialsequencedatafromeighteuropeantaxa
AT waylandmatthewt systematicsofechinorhynchuszoegainmuller1776acanthocephalaechinorhynchidaeelucidatedbynuclearandmitochondrialsequencedatafromeighteuropeantaxa
AT vainiojounik systematicsofechinorhynchuszoegainmuller1776acanthocephalaechinorhynchidaeelucidatedbynuclearandmitochondrialsequencedatafromeighteuropeantaxa
AT gibsondavidi systematicsofechinorhynchuszoegainmuller1776acanthocephalaechinorhynchidaeelucidatedbynuclearandmitochondrialsequencedatafromeighteuropeantaxa
AT herniouelisabetha systematicsofechinorhynchuszoegainmuller1776acanthocephalaechinorhynchidaeelucidatedbynuclearandmitochondrialsequencedatafromeighteuropeantaxa
AT littlewooddtimothyj systematicsofechinorhynchuszoegainmuller1776acanthocephalaechinorhynchidaeelucidatedbynuclearandmitochondrialsequencedatafromeighteuropeantaxa
AT vainolaristo systematicsofechinorhynchuszoegainmuller1776acanthocephalaechinorhynchidaeelucidatedbynuclearandmitochondrialsequencedatafromeighteuropeantaxa