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The Complete Chloroplast Genome of Two Important Annual Clover Species, Trifolium alexandrinum and T. resupinatum: Genome Structure, Comparative Analyses and Phylogenetic Relationships with Relatives in Leguminosae

Trifolium L., which belongs to the IR lacking clade (IRLC), is one of the largest genera in the Leguminosae and contains several economically important fodder species. Here, we present whole chloroplast (cp) genome sequencing and annotation of two important annual grasses, Trifolium alexandrinum (Eg...

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Autores principales: Xiong, Yanli, Xiong, Yi, He, Jun, Yu, Qingqing, Zhao, Junming, Lei, Xiong, Dong, Zhixiao, Yang, Jian, Peng, Yan, Zhang, Xinquan, Ma, Xiao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7238141/
https://www.ncbi.nlm.nih.gov/pubmed/32283660
http://dx.doi.org/10.3390/plants9040478
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author Xiong, Yanli
Xiong, Yi
He, Jun
Yu, Qingqing
Zhao, Junming
Lei, Xiong
Dong, Zhixiao
Yang, Jian
Peng, Yan
Zhang, Xinquan
Ma, Xiao
author_facet Xiong, Yanli
Xiong, Yi
He, Jun
Yu, Qingqing
Zhao, Junming
Lei, Xiong
Dong, Zhixiao
Yang, Jian
Peng, Yan
Zhang, Xinquan
Ma, Xiao
author_sort Xiong, Yanli
collection PubMed
description Trifolium L., which belongs to the IR lacking clade (IRLC), is one of the largest genera in the Leguminosae and contains several economically important fodder species. Here, we present whole chloroplast (cp) genome sequencing and annotation of two important annual grasses, Trifolium alexandrinum (Egyptian clover) and T. resupinatum (Persian clover). Abundant single nucleotide polymorphisms (SNPs) and insertions/deletions (In/Dels) were discovered between those two species. Global alignment of T. alexandrinum and T. resupinatum to a further thirteen Trifolium species revealed a large amount of rearrangement and repetitive events in these fifteen species. As hypothetical cp open reading frame (ORF) and RNA polymerase subunits, ycf1 and rpoC2 in the cp genomes both contain vast repetitive sequences and observed high Pi values (0.7008, 0.3982) between T. alexandrinum and T. resupinatum. Thus they could be considered as the candidate genes for phylogenetic analysis of Trifolium species. In addition, the divergence time of those IR lacking Trifolium species ranged from 84.8505 Mya to 4.7720 Mya. This study will provide insight into the evolution of Trifolium species.
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spelling pubmed-72381412020-05-28 The Complete Chloroplast Genome of Two Important Annual Clover Species, Trifolium alexandrinum and T. resupinatum: Genome Structure, Comparative Analyses and Phylogenetic Relationships with Relatives in Leguminosae Xiong, Yanli Xiong, Yi He, Jun Yu, Qingqing Zhao, Junming Lei, Xiong Dong, Zhixiao Yang, Jian Peng, Yan Zhang, Xinquan Ma, Xiao Plants (Basel) Article Trifolium L., which belongs to the IR lacking clade (IRLC), is one of the largest genera in the Leguminosae and contains several economically important fodder species. Here, we present whole chloroplast (cp) genome sequencing and annotation of two important annual grasses, Trifolium alexandrinum (Egyptian clover) and T. resupinatum (Persian clover). Abundant single nucleotide polymorphisms (SNPs) and insertions/deletions (In/Dels) were discovered between those two species. Global alignment of T. alexandrinum and T. resupinatum to a further thirteen Trifolium species revealed a large amount of rearrangement and repetitive events in these fifteen species. As hypothetical cp open reading frame (ORF) and RNA polymerase subunits, ycf1 and rpoC2 in the cp genomes both contain vast repetitive sequences and observed high Pi values (0.7008, 0.3982) between T. alexandrinum and T. resupinatum. Thus they could be considered as the candidate genes for phylogenetic analysis of Trifolium species. In addition, the divergence time of those IR lacking Trifolium species ranged from 84.8505 Mya to 4.7720 Mya. This study will provide insight into the evolution of Trifolium species. MDPI 2020-04-09 /pmc/articles/PMC7238141/ /pubmed/32283660 http://dx.doi.org/10.3390/plants9040478 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xiong, Yanli
Xiong, Yi
He, Jun
Yu, Qingqing
Zhao, Junming
Lei, Xiong
Dong, Zhixiao
Yang, Jian
Peng, Yan
Zhang, Xinquan
Ma, Xiao
The Complete Chloroplast Genome of Two Important Annual Clover Species, Trifolium alexandrinum and T. resupinatum: Genome Structure, Comparative Analyses and Phylogenetic Relationships with Relatives in Leguminosae
title The Complete Chloroplast Genome of Two Important Annual Clover Species, Trifolium alexandrinum and T. resupinatum: Genome Structure, Comparative Analyses and Phylogenetic Relationships with Relatives in Leguminosae
title_full The Complete Chloroplast Genome of Two Important Annual Clover Species, Trifolium alexandrinum and T. resupinatum: Genome Structure, Comparative Analyses and Phylogenetic Relationships with Relatives in Leguminosae
title_fullStr The Complete Chloroplast Genome of Two Important Annual Clover Species, Trifolium alexandrinum and T. resupinatum: Genome Structure, Comparative Analyses and Phylogenetic Relationships with Relatives in Leguminosae
title_full_unstemmed The Complete Chloroplast Genome of Two Important Annual Clover Species, Trifolium alexandrinum and T. resupinatum: Genome Structure, Comparative Analyses and Phylogenetic Relationships with Relatives in Leguminosae
title_short The Complete Chloroplast Genome of Two Important Annual Clover Species, Trifolium alexandrinum and T. resupinatum: Genome Structure, Comparative Analyses and Phylogenetic Relationships with Relatives in Leguminosae
title_sort complete chloroplast genome of two important annual clover species, trifolium alexandrinum and t. resupinatum: genome structure, comparative analyses and phylogenetic relationships with relatives in leguminosae
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7238141/
https://www.ncbi.nlm.nih.gov/pubmed/32283660
http://dx.doi.org/10.3390/plants9040478
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