The mitochondrial genomes of Euphausia pacifica and Thysanoessa raschii sequenced using 454 next-generation sequencing, with a phylogenetic analysis of their position in the Malacostracan family tree

Euphausiid krill play a critical role in coastal and oceanic food webs, linking primary producers to upper trophic levels. In addition, some species support commercial fisheries worldwide. Despite their ecological importance, the genetics of these important species remain poorly described. To improv...

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Main Authors: Johansson, Mattias L., Sremba, Angela L., Feinberg, Leah R., Banks, Michael A., Peterson, William T.
Other Authors: Hatfield Marine Science Center
Format: Article in Journal/Newspaper
Language:English
unknown
Published: Springer
Subjects:
Online Access:https://ir.library.oregonstate.edu/concern/articles/zk51vh359
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spelling ftoregonstate:ir.library.oregonstate.edu:zk51vh359 2024-04-14T08:09:50+00:00 The mitochondrial genomes of Euphausia pacifica and Thysanoessa raschii sequenced using 454 next-generation sequencing, with a phylogenetic analysis of their position in the Malacostracan family tree Johansson, Mattias L. Sremba, Angela L. Feinberg, Leah R. Banks, Michael A. Peterson, William T. Hatfield Marine Science Center https://ir.library.oregonstate.edu/concern/articles/zk51vh359 English [eng] eng unknown Springer https://ir.library.oregonstate.edu/concern/articles/zk51vh359 Copyright Not Evaluated Article ftoregonstate 2024-03-21T15:52:05Z Euphausiid krill play a critical role in coastal and oceanic food webs, linking primary producers to upper trophic levels. In addition, some species support commercial fisheries worldwide. Despite their ecological importance, the genetics of these important species remain poorly described. To improve our understanding of the genetics of these ecological links, we sequenced the mitochondrial genomes of two species of North Pacific krill, Euphausia pacifica and Thysanoessa raschii, using long-range PCR and 454 GS Junior next-generation sequencing technology. The E. pacifica mitogenome (14,692 + base pairs (bp)) encodes 13 protein-coding genes (PCGs), two ribosomal RNA (rRNA) genes, and at least 22 transfer RNA (tRNA) genes. The T. raschii mitogenome (14,240 + bp) encodes 13 PCGs, two rRNA genes, and at least 19 tRNA genes. The gene order in both species is similar to that of E. superba. Comparisons between Bering Sea and Yellow Sea E. pacifica revealed a total of 644 variable sites. The most variable protein-coding gene were atp8 (7.55 %, 12 of 159 sites variable), nad4 (6.35 %, 85 variable sites) and nad6 (6.32 %, 33 variable sites). Phylogenetic analyses to assess the phylogenetic position of the Euphausiacea, using the concatenated nucleic acid sequences of E. pacifica and T. raschii along with 46 previously published malacostracan mitogenomes, support the monophyly of the order Decapoda and indicate that the Euphausiacea share a common ancestor with the Decapoda. Future research should utilize this sequence data to explore the population genetics and molecular ecology of these species. Keywords: Malacostraca, Euphausiacea, Mitochondrial genome, mtDNA, Phylogeny Keywords: Malacostraca, Euphausiacea, Mitochondrial genome, mtDNA, Phylogeny Article in Journal/Newspaper Bering Sea Thysanoessa raschii ScholarsArchive@OSU (Oregon State University) Bering Sea Pacific
institution Open Polar
collection ScholarsArchive@OSU (Oregon State University)
op_collection_id ftoregonstate
language English
unknown
description Euphausiid krill play a critical role in coastal and oceanic food webs, linking primary producers to upper trophic levels. In addition, some species support commercial fisheries worldwide. Despite their ecological importance, the genetics of these important species remain poorly described. To improve our understanding of the genetics of these ecological links, we sequenced the mitochondrial genomes of two species of North Pacific krill, Euphausia pacifica and Thysanoessa raschii, using long-range PCR and 454 GS Junior next-generation sequencing technology. The E. pacifica mitogenome (14,692 + base pairs (bp)) encodes 13 protein-coding genes (PCGs), two ribosomal RNA (rRNA) genes, and at least 22 transfer RNA (tRNA) genes. The T. raschii mitogenome (14,240 + bp) encodes 13 PCGs, two rRNA genes, and at least 19 tRNA genes. The gene order in both species is similar to that of E. superba. Comparisons between Bering Sea and Yellow Sea E. pacifica revealed a total of 644 variable sites. The most variable protein-coding gene were atp8 (7.55 %, 12 of 159 sites variable), nad4 (6.35 %, 85 variable sites) and nad6 (6.32 %, 33 variable sites). Phylogenetic analyses to assess the phylogenetic position of the Euphausiacea, using the concatenated nucleic acid sequences of E. pacifica and T. raschii along with 46 previously published malacostracan mitogenomes, support the monophyly of the order Decapoda and indicate that the Euphausiacea share a common ancestor with the Decapoda. Future research should utilize this sequence data to explore the population genetics and molecular ecology of these species. Keywords: Malacostraca, Euphausiacea, Mitochondrial genome, mtDNA, Phylogeny Keywords: Malacostraca, Euphausiacea, Mitochondrial genome, mtDNA, Phylogeny
author2 Hatfield Marine Science Center
format Article in Journal/Newspaper
author Johansson, Mattias L.
Sremba, Angela L.
Feinberg, Leah R.
Banks, Michael A.
Peterson, William T.
spellingShingle Johansson, Mattias L.
Sremba, Angela L.
Feinberg, Leah R.
Banks, Michael A.
Peterson, William T.
The mitochondrial genomes of Euphausia pacifica and Thysanoessa raschii sequenced using 454 next-generation sequencing, with a phylogenetic analysis of their position in the Malacostracan family tree
author_facet Johansson, Mattias L.
Sremba, Angela L.
Feinberg, Leah R.
Banks, Michael A.
Peterson, William T.
author_sort Johansson, Mattias L.
title The mitochondrial genomes of Euphausia pacifica and Thysanoessa raschii sequenced using 454 next-generation sequencing, with a phylogenetic analysis of their position in the Malacostracan family tree
title_short The mitochondrial genomes of Euphausia pacifica and Thysanoessa raschii sequenced using 454 next-generation sequencing, with a phylogenetic analysis of their position in the Malacostracan family tree
title_full The mitochondrial genomes of Euphausia pacifica and Thysanoessa raschii sequenced using 454 next-generation sequencing, with a phylogenetic analysis of their position in the Malacostracan family tree
title_fullStr The mitochondrial genomes of Euphausia pacifica and Thysanoessa raschii sequenced using 454 next-generation sequencing, with a phylogenetic analysis of their position in the Malacostracan family tree
title_full_unstemmed The mitochondrial genomes of Euphausia pacifica and Thysanoessa raschii sequenced using 454 next-generation sequencing, with a phylogenetic analysis of their position in the Malacostracan family tree
title_sort mitochondrial genomes of euphausia pacifica and thysanoessa raschii sequenced using 454 next-generation sequencing, with a phylogenetic analysis of their position in the malacostracan family tree
publisher Springer
url https://ir.library.oregonstate.edu/concern/articles/zk51vh359
geographic Bering Sea
Pacific
geographic_facet Bering Sea
Pacific
genre Bering Sea
Thysanoessa raschii
genre_facet Bering Sea
Thysanoessa raschii
op_relation https://ir.library.oregonstate.edu/concern/articles/zk51vh359
op_rights Copyright Not Evaluated
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