The complete chloroplast genome sequence of Magnolia delavayi (Magnoliaceae), a rare ornamental and medical tree endemic to China

Magnolia delavayi is a rare, famous ornamental and important medical tree endemic to China. Here, we assembled the complete chloroplast (cp) genome sequence of M. delavayi. Its length is 159,715 bp with four sub-regions: 87,906 bp of large single-copy region and 18,761 bp of small single-copy region...

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Main Authors: Ao Liang, Wei Luo, Zhuoran Li, Yongkang Sima, Tao Xu
Format: Article
Language:English
Published: Taylor & Francis Group 2020-01-01
Series:Mitochondrial DNA. Part B. Resources
Subjects:
Online Access:http://dx.doi.org/10.1080/23802359.2020.1717391
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author Ao Liang
Wei Luo
Zhuoran Li
Yongkang Sima
Tao Xu
author_facet Ao Liang
Wei Luo
Zhuoran Li
Yongkang Sima
Tao Xu
author_sort Ao Liang
collection DOAJ
description Magnolia delavayi is a rare, famous ornamental and important medical tree endemic to China. Here, we assembled the complete chloroplast (cp) genome sequence of M. delavayi. Its length is 159,715 bp with four sub-regions: 87,906 bp of large single-copy region and 18,761 bp of small single-copy region are separated by two inverted repeats regions, each 26,524 bp. The genome contains 77 protein-coding genes, 6 rRNAs, and 29 tRNAs genes. Phylogenetic analysis of cp genome of M. delavayi with previously reported chloroplast genomes in Magnolia shows that M. delavayi is close to M. odoratissima with high bootstrap value.
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spelling doaj.art-28adb953214f42c6a2517303b7ea8fe42023-11-03T11:00:22ZengTaylor & Francis GroupMitochondrial DNA. Part B. Resources2380-23592020-01-015188388410.1080/23802359.2020.17173911717391The complete chloroplast genome sequence of Magnolia delavayi (Magnoliaceae), a rare ornamental and medical tree endemic to ChinaAo Liang0Wei Luo1Zhuoran Li2Yongkang Sima3Tao Xu4College of Life Sciences, Yunnan UniversityCollege of Life Sciences, Yunnan UniversityCollege of Life Sciences, Yunnan UniversityYunnan Academy of Forestry, Key Laboratory for Conservation of Rare, Endangered &Endemic Forest PlantsCollege of Life Sciences, Yunnan UniversityMagnolia delavayi is a rare, famous ornamental and important medical tree endemic to China. Here, we assembled the complete chloroplast (cp) genome sequence of M. delavayi. Its length is 159,715 bp with four sub-regions: 87,906 bp of large single-copy region and 18,761 bp of small single-copy region are separated by two inverted repeats regions, each 26,524 bp. The genome contains 77 protein-coding genes, 6 rRNAs, and 29 tRNAs genes. Phylogenetic analysis of cp genome of M. delavayi with previously reported chloroplast genomes in Magnolia shows that M. delavayi is close to M. odoratissima with high bootstrap value.http://dx.doi.org/10.1080/23802359.2020.1717391chloroplast genomemedical speciesmagnolia delavayimagnoliaceae
spellingShingle Ao Liang
Wei Luo
Zhuoran Li
Yongkang Sima
Tao Xu
The complete chloroplast genome sequence of Magnolia delavayi (Magnoliaceae), a rare ornamental and medical tree endemic to China
Mitochondrial DNA. Part B. Resources
chloroplast genome
medical species
magnolia delavayi
magnoliaceae
title The complete chloroplast genome sequence of Magnolia delavayi (Magnoliaceae), a rare ornamental and medical tree endemic to China
title_full The complete chloroplast genome sequence of Magnolia delavayi (Magnoliaceae), a rare ornamental and medical tree endemic to China
title_fullStr The complete chloroplast genome sequence of Magnolia delavayi (Magnoliaceae), a rare ornamental and medical tree endemic to China
title_full_unstemmed The complete chloroplast genome sequence of Magnolia delavayi (Magnoliaceae), a rare ornamental and medical tree endemic to China
title_short The complete chloroplast genome sequence of Magnolia delavayi (Magnoliaceae), a rare ornamental and medical tree endemic to China
title_sort complete chloroplast genome sequence of magnolia delavayi magnoliaceae a rare ornamental and medical tree endemic to china
topic chloroplast genome
medical species
magnolia delavayi
magnoliaceae
url http://dx.doi.org/10.1080/23802359.2020.1717391
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