The complete chloroplast genome of a moss Korea Myuroclada maximowiczii (G.G. Borshch.) Steere & W.B. Schofield

The complete chloroplast (cp) genome sequence of Myuroclada maximowiczii (GenBank accession number MT726030), a species of moss in the Brachytheciaceae family, was determined using Illumina HiSeq paired-end sequencing data. The total size of the cp genome was 124,607 bp. The genome contained a large...

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Main Authors: Yeong-Deok Han, Youngeun Choi, Rae-Ha Jang, Young-Jun Yoon
Format: Article
Language:English
Published: Taylor & Francis Group 2020-07-01
Series:Mitochondrial DNA. Part B. Resources
Subjects:
Online Access:http://dx.doi.org/10.1080/23802359.2020.1823265
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author Yeong-Deok Han
Youngeun Choi
Rae-Ha Jang
Young-Jun Yoon
author_facet Yeong-Deok Han
Youngeun Choi
Rae-Ha Jang
Young-Jun Yoon
author_sort Yeong-Deok Han
collection DOAJ
description The complete chloroplast (cp) genome sequence of Myuroclada maximowiczii (GenBank accession number MT726030), a species of moss in the Brachytheciaceae family, was determined using Illumina HiSeq paired-end sequencing data. The total size of the cp genome was 124,607 bp. The genome contained a large single-copy (LSC) region of 86,684 bp, a small single-copy (SSC) region of 18,483 bp, and a pair of identical inverted repeat regions (IRs) of 9,720 bp. The genome contained 82 protein-coding genes, 36 transfer RNA (tRNA) genes, and eight ribosomal RNA (rRNA) genes. The cp genome presented here will provide useful information for future phylogenetic and evolutionary studies of Myuroclada species.
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spelling doaj.art-df701733a246472fb0e90dd936b987042023-11-03T14:00:33ZengTaylor & Francis GroupMitochondrial DNA. Part B. Resources2380-23592020-07-01533443344410.1080/23802359.2020.18232651823265The complete chloroplast genome of a moss Korea Myuroclada maximowiczii (G.G. Borshch.) Steere & W.B. SchofieldYeong-Deok Han0Youngeun Choi1Rae-Ha Jang2Young-Jun Yoon3Research Center for Endangered Species, National Institute of EcologyDepartment of Ecology Landscape Design, Jeonbuk National UniversityResearch Center for Endangered Species, National Institute of EcologyResearch Center for Endangered Species, National Institute of EcologyThe complete chloroplast (cp) genome sequence of Myuroclada maximowiczii (GenBank accession number MT726030), a species of moss in the Brachytheciaceae family, was determined using Illumina HiSeq paired-end sequencing data. The total size of the cp genome was 124,607 bp. The genome contained a large single-copy (LSC) region of 86,684 bp, a small single-copy (SSC) region of 18,483 bp, and a pair of identical inverted repeat regions (IRs) of 9,720 bp. The genome contained 82 protein-coding genes, 36 transfer RNA (tRNA) genes, and eight ribosomal RNA (rRNA) genes. The cp genome presented here will provide useful information for future phylogenetic and evolutionary studies of Myuroclada species.http://dx.doi.org/10.1080/23802359.2020.1823265myuroclada maximowicziimosscomplete chloroplast genome
spellingShingle Yeong-Deok Han
Youngeun Choi
Rae-Ha Jang
Young-Jun Yoon
The complete chloroplast genome of a moss Korea Myuroclada maximowiczii (G.G. Borshch.) Steere & W.B. Schofield
Mitochondrial DNA. Part B. Resources
myuroclada maximowiczii
moss
complete chloroplast genome
title The complete chloroplast genome of a moss Korea Myuroclada maximowiczii (G.G. Borshch.) Steere & W.B. Schofield
title_full The complete chloroplast genome of a moss Korea Myuroclada maximowiczii (G.G. Borshch.) Steere & W.B. Schofield
title_fullStr The complete chloroplast genome of a moss Korea Myuroclada maximowiczii (G.G. Borshch.) Steere & W.B. Schofield
title_full_unstemmed The complete chloroplast genome of a moss Korea Myuroclada maximowiczii (G.G. Borshch.) Steere & W.B. Schofield
title_short The complete chloroplast genome of a moss Korea Myuroclada maximowiczii (G.G. Borshch.) Steere & W.B. Schofield
title_sort complete chloroplast genome of a moss korea myuroclada maximowiczii g g borshch steere w b schofield
topic myuroclada maximowiczii
moss
complete chloroplast genome
url http://dx.doi.org/10.1080/23802359.2020.1823265
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