Chloroplast genome characteristics and phylogenetic analysis of Macropanax rosthornii (Harms) C.Y. Wu ex G. Hoo (Araliaceae)

Macropanax rosthornii (Harms) C.Y.Wu ex G.Hoo 1900 is a small tree or evergreen shrub of the family Araliaceae, mainly distributed in southern China and Vietnam with a small distribution area. M. rosthornii is a kind of high-quality wild ornamental plant resource and is also known for its effective...

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Main Authors: Shuxin Du, Huiying Huang, Shuhui Yang, Tianyi Gu, Mengli Zhou, Ruihong Wang
Format: Article
Language:English
Published: Taylor & Francis Group 2025-03-01
Series:Mitochondrial DNA. Part B. Resources
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Online Access:https://www.tandfonline.com/doi/10.1080/23802359.2025.2460778
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author Shuxin Du
Huiying Huang
Shuhui Yang
Tianyi Gu
Mengli Zhou
Ruihong Wang
author_facet Shuxin Du
Huiying Huang
Shuhui Yang
Tianyi Gu
Mengli Zhou
Ruihong Wang
author_sort Shuxin Du
collection DOAJ
description Macropanax rosthornii (Harms) C.Y.Wu ex G.Hoo 1900 is a small tree or evergreen shrub of the family Araliaceae, mainly distributed in southern China and Vietnam with a small distribution area. M. rosthornii is a kind of high-quality wild ornamental plant resource and is also known for its effective medicinal treatment for fracture, rheumatoid arthritis, traumatic injury, infant malnutrition, etc. In this study, the first complete chloroplast genome of M. rosthornii was reported and phylogenetic analysis was conducted with other 10 species from Araliaceae. The chloroplast genome was 152,831 bp with 39% overall GC content and includes a large single-copy (LSC) region (93,751 bp), a small single-copy (SSC) region (18,930 bp), and a pair of inverted repeats (IR) regions (20,075 bp). There are 109 genes in the chloroplast genome of M. rosthornii, including 78 protein-coding genes, 21 tRNA genes, and 10 rRNA genes. The phylogenetic tree showed that M. rosthornii is closely related to Hydrocotyle vulgaris and Hydrocotyle sibthorpioides. The chloroplast genome reported here will be beneficial for its interspecific identification and evolutionary studies of Macropanax.
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institution Kabale University
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publishDate 2025-03-01
publisher Taylor & Francis Group
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series Mitochondrial DNA. Part B. Resources
spelling doaj-art-ddeb204bbb4247c79a8ad4b1e1c4f0352025-02-03T08:08:11ZengTaylor & Francis GroupMitochondrial DNA. Part B. Resources2380-23592025-03-0110317918210.1080/23802359.2025.2460778Chloroplast genome characteristics and phylogenetic analysis of Macropanax rosthornii (Harms) C.Y. Wu ex G. Hoo (Araliaceae)Shuxin Du0Huiying Huang1Shuhui Yang2Tianyi Gu3Mengli Zhou4Ruihong Wang5Zhejiang Province Key Laboratory of Plant Secondary Metabolism and Regulation, College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou, ChinaZhejiang Province Key Laboratory of Plant Secondary Metabolism and Regulation, College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou, ChinaZhejiang Province Key Laboratory of Plant Secondary Metabolism and Regulation, College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou, ChinaZhejiang Province Key Laboratory of Plant Secondary Metabolism and Regulation, College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou, ChinaZhejiang Province Key Laboratory of Plant Secondary Metabolism and Regulation, College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou, ChinaZhejiang Province Key Laboratory of Plant Secondary Metabolism and Regulation, College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou, ChinaMacropanax rosthornii (Harms) C.Y.Wu ex G.Hoo 1900 is a small tree or evergreen shrub of the family Araliaceae, mainly distributed in southern China and Vietnam with a small distribution area. M. rosthornii is a kind of high-quality wild ornamental plant resource and is also known for its effective medicinal treatment for fracture, rheumatoid arthritis, traumatic injury, infant malnutrition, etc. In this study, the first complete chloroplast genome of M. rosthornii was reported and phylogenetic analysis was conducted with other 10 species from Araliaceae. The chloroplast genome was 152,831 bp with 39% overall GC content and includes a large single-copy (LSC) region (93,751 bp), a small single-copy (SSC) region (18,930 bp), and a pair of inverted repeats (IR) regions (20,075 bp). There are 109 genes in the chloroplast genome of M. rosthornii, including 78 protein-coding genes, 21 tRNA genes, and 10 rRNA genes. The phylogenetic tree showed that M. rosthornii is closely related to Hydrocotyle vulgaris and Hydrocotyle sibthorpioides. The chloroplast genome reported here will be beneficial for its interspecific identification and evolutionary studies of Macropanax.https://www.tandfonline.com/doi/10.1080/23802359.2025.2460778Macropanax rosthorniiAraliaceaechloroplast genomephylogenetic analysis
spellingShingle Shuxin Du
Huiying Huang
Shuhui Yang
Tianyi Gu
Mengli Zhou
Ruihong Wang
Chloroplast genome characteristics and phylogenetic analysis of Macropanax rosthornii (Harms) C.Y. Wu ex G. Hoo (Araliaceae)
Mitochondrial DNA. Part B. Resources
Macropanax rosthornii
Araliaceae
chloroplast genome
phylogenetic analysis
title Chloroplast genome characteristics and phylogenetic analysis of Macropanax rosthornii (Harms) C.Y. Wu ex G. Hoo (Araliaceae)
title_full Chloroplast genome characteristics and phylogenetic analysis of Macropanax rosthornii (Harms) C.Y. Wu ex G. Hoo (Araliaceae)
title_fullStr Chloroplast genome characteristics and phylogenetic analysis of Macropanax rosthornii (Harms) C.Y. Wu ex G. Hoo (Araliaceae)
title_full_unstemmed Chloroplast genome characteristics and phylogenetic analysis of Macropanax rosthornii (Harms) C.Y. Wu ex G. Hoo (Araliaceae)
title_short Chloroplast genome characteristics and phylogenetic analysis of Macropanax rosthornii (Harms) C.Y. Wu ex G. Hoo (Araliaceae)
title_sort chloroplast genome characteristics and phylogenetic analysis of macropanax rosthornii harms c y wu ex g hoo araliaceae
topic Macropanax rosthornii
Araliaceae
chloroplast genome
phylogenetic analysis
url https://www.tandfonline.com/doi/10.1080/23802359.2025.2460778
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