The complete plastid genome of Cheniella didyma (H.Y.Chen) R.Clark & Mackinder (Leguminosae)

We report here for the first time the complete plastid genome of Cheniella didyma of the legume family. The plastid genome has a typical circular structure with a total length of 157,186 bp and contains two inverted repeat regions (IRs, 24,455 bp), a large single-copy region (LSC, 89,410 bp), and a...

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Main Authors: Qiubiao Zeng, Shiran Gu, Zhonghui Ma, Tieyao Tu
Format: Article
Language:English
Published: Taylor & Francis Group 2022-01-01
Series:Mitochondrial DNA. Part B. Resources
Subjects:
Online Access:http://dx.doi.org/10.1080/23802359.2021.1989333
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author Qiubiao Zeng
Shiran Gu
Zhonghui Ma
Tieyao Tu
author_facet Qiubiao Zeng
Shiran Gu
Zhonghui Ma
Tieyao Tu
author_sort Qiubiao Zeng
collection DOAJ
description We report here for the first time the complete plastid genome of Cheniella didyma of the legume family. The plastid genome has a typical circular structure with a total length of 157,186 bp and contains two inverted repeat regions (IRs, 24,455 bp), a large single-copy region (LSC, 89,410 bp), and a small single-copy region (SSC, 18,866 bp). This is the first report of the complete plastid genome sequence of Cheniella, a genus recently segregated from Bauhinia s.l. The phylogenetic analysis based on 77 coding regions of the plastome of this species and those of the related species strongly suggested that C. didyma is sister to Lysiphyllum and is not directly related to Bauhinia s.s.
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spelling doaj.art-46f3d61d0ab340a098f5c2abd601347f2023-11-03T14:28:31ZengTaylor & Francis GroupMitochondrial DNA. Part B. Resources2380-23592022-01-017120220310.1080/23802359.2021.19893331989333The complete plastid genome of Cheniella didyma (H.Y.Chen) R.Clark & Mackinder (Leguminosae)Qiubiao Zeng0Shiran Gu1Zhonghui Ma2Tieyao Tu3National Demonstration Center for Experimental Plant Science Education, College of Agriculture, Guangxi UniversityKey Laboratory of Plant Resources Conservation and Sustainable Utilization, South China Botanical Garden, Chinese Academy of SciencesNational Demonstration Center for Experimental Plant Science Education, College of Agriculture, Guangxi UniversityKey Laboratory of Plant Resources Conservation and Sustainable Utilization, South China Botanical Garden, Chinese Academy of SciencesWe report here for the first time the complete plastid genome of Cheniella didyma of the legume family. The plastid genome has a typical circular structure with a total length of 157,186 bp and contains two inverted repeat regions (IRs, 24,455 bp), a large single-copy region (LSC, 89,410 bp), and a small single-copy region (SSC, 18,866 bp). This is the first report of the complete plastid genome sequence of Cheniella, a genus recently segregated from Bauhinia s.l. The phylogenetic analysis based on 77 coding regions of the plastome of this species and those of the related species strongly suggested that C. didyma is sister to Lysiphyllum and is not directly related to Bauhinia s.s.http://dx.doi.org/10.1080/23802359.2021.1989333bauhinia; cheniellachloroplast genomeleguminosaephylogeny
spellingShingle Qiubiao Zeng
Shiran Gu
Zhonghui Ma
Tieyao Tu
The complete plastid genome of Cheniella didyma (H.Y.Chen) R.Clark & Mackinder (Leguminosae)
Mitochondrial DNA. Part B. Resources
bauhinia; cheniella
chloroplast genome
leguminosae
phylogeny
title The complete plastid genome of Cheniella didyma (H.Y.Chen) R.Clark & Mackinder (Leguminosae)
title_full The complete plastid genome of Cheniella didyma (H.Y.Chen) R.Clark & Mackinder (Leguminosae)
title_fullStr The complete plastid genome of Cheniella didyma (H.Y.Chen) R.Clark & Mackinder (Leguminosae)
title_full_unstemmed The complete plastid genome of Cheniella didyma (H.Y.Chen) R.Clark & Mackinder (Leguminosae)
title_short The complete plastid genome of Cheniella didyma (H.Y.Chen) R.Clark & Mackinder (Leguminosae)
title_sort complete plastid genome of cheniella didyma h y chen r clark mackinder leguminosae
topic bauhinia; cheniella
chloroplast genome
leguminosae
phylogeny
url http://dx.doi.org/10.1080/23802359.2021.1989333
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