The complete mitochondrial genome of Coronocyclus labratus (Rhabditida: Cyathostominae)
The complete mitochondrial genome sequence of Coronocyclus labratus was sequenced in the present study. It was determined to be 13,856 bp in length, containing 12 protein-coding genes, 2 ribosomal RNA genes, 22 transfer RNA genes, and 2 non-coding regions. The nucleotide sequence data of 12 protein-...
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Format: | Article |
Language: | English |
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Taylor & Francis Group
2020-01-01
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Series: | Mitochondrial DNA. Part B. Resources |
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Online Access: | http://dx.doi.org/10.1080/23802359.2020.1721361 |
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author | Shuwen Yang Peng Li Chenguang Sun Wei Liu |
author_facet | Shuwen Yang Peng Li Chenguang Sun Wei Liu |
author_sort | Shuwen Yang |
collection | DOAJ |
description | The complete mitochondrial genome sequence of Coronocyclus labratus was sequenced in the present study. It was determined to be 13,856 bp in length, containing 12 protein-coding genes, 2 ribosomal RNA genes, 22 transfer RNA genes, and 2 non-coding regions. The nucleotide sequence data of 12 protein-coding genes of C. labratus and other 16 Strongylidae species were used for phylogenetic analyses. Coronocyclu labratus formed a monophyletic cluster with the remaining Strongylidae species. Coronocyclus genus was present in the same clade with high statistical support. The mitogenome sequences will facilitate taxonomy as well as systematic studies of Cyathostominae nematodes. |
first_indexed | 2024-03-11T13:17:34Z |
format | Article |
id | doaj.art-71c778110ad7463c95f5633bf989adf2 |
institution | Directory Open Access Journal |
issn | 2380-2359 |
language | English |
last_indexed | 2024-03-11T13:17:34Z |
publishDate | 2020-01-01 |
publisher | Taylor & Francis Group |
record_format | Article |
series | Mitochondrial DNA. Part B. Resources |
spelling | doaj.art-71c778110ad7463c95f5633bf989adf22023-11-03T11:00:22ZengTaylor & Francis GroupMitochondrial DNA. Part B. Resources2380-23592020-01-01511044104510.1080/23802359.2020.17213611721361The complete mitochondrial genome of Coronocyclus labratus (Rhabditida: Cyathostominae)Shuwen Yang0Peng Li1Chenguang Sun2Wei Liu3College of Life Sciences, Henan Normal UniversityKey Laboratory of Environment Change and Resources Use in Beibu Gulf, Nanning Normal UniversityCollege of Life Sciences, Henan Normal UniversityCollege of Life Sciences, Henan Normal UniversityThe complete mitochondrial genome sequence of Coronocyclus labratus was sequenced in the present study. It was determined to be 13,856 bp in length, containing 12 protein-coding genes, 2 ribosomal RNA genes, 22 transfer RNA genes, and 2 non-coding regions. The nucleotide sequence data of 12 protein-coding genes of C. labratus and other 16 Strongylidae species were used for phylogenetic analyses. Coronocyclu labratus formed a monophyletic cluster with the remaining Strongylidae species. Coronocyclus genus was present in the same clade with high statistical support. The mitogenome sequences will facilitate taxonomy as well as systematic studies of Cyathostominae nematodes.http://dx.doi.org/10.1080/23802359.2020.1721361coronocyclus labratusmitochondrial genomephylogenetic analysis |
spellingShingle | Shuwen Yang Peng Li Chenguang Sun Wei Liu The complete mitochondrial genome of Coronocyclus labratus (Rhabditida: Cyathostominae) Mitochondrial DNA. Part B. Resources coronocyclus labratus mitochondrial genome phylogenetic analysis |
title | The complete mitochondrial genome of Coronocyclus labratus (Rhabditida: Cyathostominae) |
title_full | The complete mitochondrial genome of Coronocyclus labratus (Rhabditida: Cyathostominae) |
title_fullStr | The complete mitochondrial genome of Coronocyclus labratus (Rhabditida: Cyathostominae) |
title_full_unstemmed | The complete mitochondrial genome of Coronocyclus labratus (Rhabditida: Cyathostominae) |
title_short | The complete mitochondrial genome of Coronocyclus labratus (Rhabditida: Cyathostominae) |
title_sort | complete mitochondrial genome of coronocyclus labratus rhabditida cyathostominae |
topic | coronocyclus labratus mitochondrial genome phylogenetic analysis |
url | http://dx.doi.org/10.1080/23802359.2020.1721361 |
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