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Phylogenomics and Genetic Diversity of Arnebiae Radix and Its Allies (Arnebia, Boraginaceae) in China

Arnebiae Radix is a traditional medicine with pleiotropic properties that has been used for several 100 years. There are five species of Arnebia in China, and the two species Arnebia euchroma and Arnebia guttata are the source plants of Arnebiae Radix according to the Chinese Pharmacopoeia. Molecula...

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Autores principales: Sun, Jiahui, Wang, Sheng, Wang, Yiheng, Wang, Ruishan, Liu, Kangjia, Li, Enze, Qiao, Ping, Shi, Linyuan, Dong, Wenpan, Huang, Luqi, Guo, Lanping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9218939/
https://www.ncbi.nlm.nih.gov/pubmed/35755641
http://dx.doi.org/10.3389/fpls.2022.920826
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author Sun, Jiahui
Wang, Sheng
Wang, Yiheng
Wang, Ruishan
Liu, Kangjia
Li, Enze
Qiao, Ping
Shi, Linyuan
Dong, Wenpan
Huang, Luqi
Guo, Lanping
author_facet Sun, Jiahui
Wang, Sheng
Wang, Yiheng
Wang, Ruishan
Liu, Kangjia
Li, Enze
Qiao, Ping
Shi, Linyuan
Dong, Wenpan
Huang, Luqi
Guo, Lanping
author_sort Sun, Jiahui
collection PubMed
description Arnebiae Radix is a traditional medicine with pleiotropic properties that has been used for several 100 years. There are five species of Arnebia in China, and the two species Arnebia euchroma and Arnebia guttata are the source plants of Arnebiae Radix according to the Chinese Pharmacopoeia. Molecular markers that permit species identification and facilitate studies of the genetic diversity and divergence of the wild populations of these two source plants have not yet been developed. Here, we sequenced the chloroplast genomes of 56 samples of five Arnebia species using genome skimming methods. The Arnebia chloroplast genomes exhibited quadripartite structures with lengths from 149,539 and 152,040 bp. Three variable markers (rps16-trnQ, ndhF-rpl32, and ycf1b) were identified, and these markers exhibited more variable sites than universal chloroplast markers. The phylogenetic relationships among the five Arnebia species were completely resolved using the whole chloroplast genome sequences. Arnebia arose during the Oligocene and diversified in the middle Miocene; this coincided with two geological events during the late Oligocene and early Miocene: warming and the progressive uplift of Tianshan and the Himalayas. Our analyses revealed that A. euchroma and A. guttata have high levels of genetic diversity and comprise two and three subclades, respectively. The two clades of A. euchroma exhibited significant genetic differences and diverged at 10.18 Ma in the middle Miocene. Three clades of A. guttata diverged in the Pleistocene. The results provided new insight into evolutionary history of Arnebia species and promoted the conservation and exploitation of A. euchroma and A. guttata.
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spelling pubmed-92189392022-06-24 Phylogenomics and Genetic Diversity of Arnebiae Radix and Its Allies (Arnebia, Boraginaceae) in China Sun, Jiahui Wang, Sheng Wang, Yiheng Wang, Ruishan Liu, Kangjia Li, Enze Qiao, Ping Shi, Linyuan Dong, Wenpan Huang, Luqi Guo, Lanping Front Plant Sci Plant Science Arnebiae Radix is a traditional medicine with pleiotropic properties that has been used for several 100 years. There are five species of Arnebia in China, and the two species Arnebia euchroma and Arnebia guttata are the source plants of Arnebiae Radix according to the Chinese Pharmacopoeia. Molecular markers that permit species identification and facilitate studies of the genetic diversity and divergence of the wild populations of these two source plants have not yet been developed. Here, we sequenced the chloroplast genomes of 56 samples of five Arnebia species using genome skimming methods. The Arnebia chloroplast genomes exhibited quadripartite structures with lengths from 149,539 and 152,040 bp. Three variable markers (rps16-trnQ, ndhF-rpl32, and ycf1b) were identified, and these markers exhibited more variable sites than universal chloroplast markers. The phylogenetic relationships among the five Arnebia species were completely resolved using the whole chloroplast genome sequences. Arnebia arose during the Oligocene and diversified in the middle Miocene; this coincided with two geological events during the late Oligocene and early Miocene: warming and the progressive uplift of Tianshan and the Himalayas. Our analyses revealed that A. euchroma and A. guttata have high levels of genetic diversity and comprise two and three subclades, respectively. The two clades of A. euchroma exhibited significant genetic differences and diverged at 10.18 Ma in the middle Miocene. Three clades of A. guttata diverged in the Pleistocene. The results provided new insight into evolutionary history of Arnebia species and promoted the conservation and exploitation of A. euchroma and A. guttata. Frontiers Media S.A. 2022-06-09 /pmc/articles/PMC9218939/ /pubmed/35755641 http://dx.doi.org/10.3389/fpls.2022.920826 Text en Copyright © 2022 Sun, Wang, Wang, Wang, Liu, Li, Qiao, Shi, Dong, Huang and Guo. 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 Plant Science
Sun, Jiahui
Wang, Sheng
Wang, Yiheng
Wang, Ruishan
Liu, Kangjia
Li, Enze
Qiao, Ping
Shi, Linyuan
Dong, Wenpan
Huang, Luqi
Guo, Lanping
Phylogenomics and Genetic Diversity of Arnebiae Radix and Its Allies (Arnebia, Boraginaceae) in China
title Phylogenomics and Genetic Diversity of Arnebiae Radix and Its Allies (Arnebia, Boraginaceae) in China
title_full Phylogenomics and Genetic Diversity of Arnebiae Radix and Its Allies (Arnebia, Boraginaceae) in China
title_fullStr Phylogenomics and Genetic Diversity of Arnebiae Radix and Its Allies (Arnebia, Boraginaceae) in China
title_full_unstemmed Phylogenomics and Genetic Diversity of Arnebiae Radix and Its Allies (Arnebia, Boraginaceae) in China
title_short Phylogenomics and Genetic Diversity of Arnebiae Radix and Its Allies (Arnebia, Boraginaceae) in China
title_sort phylogenomics and genetic diversity of arnebiae radix and its allies (arnebia, boraginaceae) in china
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9218939/
https://www.ncbi.nlm.nih.gov/pubmed/35755641
http://dx.doi.org/10.3389/fpls.2022.920826
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