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Complete sequence and comparative analysis of the mitochondrial genome of the rare and endangered Clematis acerifolia, the first clematis mitogenome to provide new insights into the phylogenetic evolutionary status of the genus

Clematis is one of the large worldwide genera of the Ranunculaceae Juss. Family, with high ornamental and medicinal value. China is the modern distribution centre of Clematis with abundant natural populations. Due to the complexity and high morphological diversity of Clematis, the genus is difficult...

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Autores principales: Liu, Dan, Qu, Kai, Yuan, Yangchen, Zhao, Zhiheng, Chen, Ying, Han, Biao, Li, Wei, El-Kassaby, Yousry A., Yin, Yangyang, Xie, Xiaoman, Tong, Boqiang, Liu, Hongshan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9907779/
https://www.ncbi.nlm.nih.gov/pubmed/36761694
http://dx.doi.org/10.3389/fgene.2022.1050040
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author Liu, Dan
Qu, Kai
Yuan, Yangchen
Zhao, Zhiheng
Chen, Ying
Han, Biao
Li, Wei
El-Kassaby, Yousry A.
Yin, Yangyang
Xie, Xiaoman
Tong, Boqiang
Liu, Hongshan
author_facet Liu, Dan
Qu, Kai
Yuan, Yangchen
Zhao, Zhiheng
Chen, Ying
Han, Biao
Li, Wei
El-Kassaby, Yousry A.
Yin, Yangyang
Xie, Xiaoman
Tong, Boqiang
Liu, Hongshan
author_sort Liu, Dan
collection PubMed
description Clematis is one of the large worldwide genera of the Ranunculaceae Juss. Family, with high ornamental and medicinal value. China is the modern distribution centre of Clematis with abundant natural populations. Due to the complexity and high morphological diversity of Clematis, the genus is difficult to classify systematically, and in particular, the phylogenetic position of the endangered Clematis acerifolia is highly controversial. The use of the mitochondrial complete genome is a powerful molecular method that is frequently used for inferring plants phylogenies. However, studies on Clematis mitogenome are rare, thus limiting our full understanding of its phylogeny and genome evolution. Here, we sequenced and annotated the C. acerifolia mt genome using Illumina short- and Nanopore long-reads, characterized the species first complete mitogenome, and performed a comparative phylogenetic analysis with its close relatives. The total length of the C. acerifolia mitogenome is 698,247 bp and the main structure is multi-branched (linear molecule 1 and circular molecule 2). We annotated 55 genes, including 35 protein-coding, 17 tRNA, and 3 rRNA genes. The C. acerifolia mitogenome has extremely unconserved structurally, with extensive sequence transfer between the chloroplast and mitochondrial organelles, sequence repeats, and RNA editing. The phylogenetic position of C. acerifolia was determined by constructing the species mitogenome with 24 angiosperms. Further, our C. acerifolia mitogenome characteristics investigation included GC contents, codon usage, repeats and synteny analysis. Overall, our results are expected to provide fundamental information for C. acerifolia mitogenome evolution and confirm the validity of mitochondrial analysis in determining the phylogenetic positioning of Clematis plants.
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spelling pubmed-99077792023-02-08 Complete sequence and comparative analysis of the mitochondrial genome of the rare and endangered Clematis acerifolia, the first clematis mitogenome to provide new insights into the phylogenetic evolutionary status of the genus Liu, Dan Qu, Kai Yuan, Yangchen Zhao, Zhiheng Chen, Ying Han, Biao Li, Wei El-Kassaby, Yousry A. Yin, Yangyang Xie, Xiaoman Tong, Boqiang Liu, Hongshan Front Genet Genetics Clematis is one of the large worldwide genera of the Ranunculaceae Juss. Family, with high ornamental and medicinal value. China is the modern distribution centre of Clematis with abundant natural populations. Due to the complexity and high morphological diversity of Clematis, the genus is difficult to classify systematically, and in particular, the phylogenetic position of the endangered Clematis acerifolia is highly controversial. The use of the mitochondrial complete genome is a powerful molecular method that is frequently used for inferring plants phylogenies. However, studies on Clematis mitogenome are rare, thus limiting our full understanding of its phylogeny and genome evolution. Here, we sequenced and annotated the C. acerifolia mt genome using Illumina short- and Nanopore long-reads, characterized the species first complete mitogenome, and performed a comparative phylogenetic analysis with its close relatives. The total length of the C. acerifolia mitogenome is 698,247 bp and the main structure is multi-branched (linear molecule 1 and circular molecule 2). We annotated 55 genes, including 35 protein-coding, 17 tRNA, and 3 rRNA genes. The C. acerifolia mitogenome has extremely unconserved structurally, with extensive sequence transfer between the chloroplast and mitochondrial organelles, sequence repeats, and RNA editing. The phylogenetic position of C. acerifolia was determined by constructing the species mitogenome with 24 angiosperms. Further, our C. acerifolia mitogenome characteristics investigation included GC contents, codon usage, repeats and synteny analysis. Overall, our results are expected to provide fundamental information for C. acerifolia mitogenome evolution and confirm the validity of mitochondrial analysis in determining the phylogenetic positioning of Clematis plants. Frontiers Media S.A. 2023-01-04 /pmc/articles/PMC9907779/ /pubmed/36761694 http://dx.doi.org/10.3389/fgene.2022.1050040 Text en Copyright © 2023 Liu, Qu, Yuan, Zhao, Chen, Han, Li, El-Kassaby, Yin, Xie, Tong and Liu. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Liu, Dan
Qu, Kai
Yuan, Yangchen
Zhao, Zhiheng
Chen, Ying
Han, Biao
Li, Wei
El-Kassaby, Yousry A.
Yin, Yangyang
Xie, Xiaoman
Tong, Boqiang
Liu, Hongshan
Complete sequence and comparative analysis of the mitochondrial genome of the rare and endangered Clematis acerifolia, the first clematis mitogenome to provide new insights into the phylogenetic evolutionary status of the genus
title Complete sequence and comparative analysis of the mitochondrial genome of the rare and endangered Clematis acerifolia, the first clematis mitogenome to provide new insights into the phylogenetic evolutionary status of the genus
title_full Complete sequence and comparative analysis of the mitochondrial genome of the rare and endangered Clematis acerifolia, the first clematis mitogenome to provide new insights into the phylogenetic evolutionary status of the genus
title_fullStr Complete sequence and comparative analysis of the mitochondrial genome of the rare and endangered Clematis acerifolia, the first clematis mitogenome to provide new insights into the phylogenetic evolutionary status of the genus
title_full_unstemmed Complete sequence and comparative analysis of the mitochondrial genome of the rare and endangered Clematis acerifolia, the first clematis mitogenome to provide new insights into the phylogenetic evolutionary status of the genus
title_short Complete sequence and comparative analysis of the mitochondrial genome of the rare and endangered Clematis acerifolia, the first clematis mitogenome to provide new insights into the phylogenetic evolutionary status of the genus
title_sort complete sequence and comparative analysis of the mitochondrial genome of the rare and endangered clematis acerifolia, the first clematis mitogenome to provide new insights into the phylogenetic evolutionary status of the genus
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9907779/
https://www.ncbi.nlm.nih.gov/pubmed/36761694
http://dx.doi.org/10.3389/fgene.2022.1050040
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