Cargando…

The Chromosome-level genome of Aesculus wilsonii provides new insights into terpenoid biosynthesis and Aesculus evolution

Aesculus L. (buckeye and horse chestnut) are woody plant species with important horticultural and medicinal values. Aesculus seeds are widely used as biomedicine and cosmetic ingredients due to their saponins. We report a chromosomal-scale genome of Aesculus wilsonii. Sequences amounting to a total...

Descripción completa

Detalles Bibliográficos
Autores principales: Ye, Lichun, Yang, Lulu, Wang, Bo, Chen, Gang, Jiang, Liping, Hu, Zhigang, Shi, Zhaohua, Liu, Yifei, Chen, Shilin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9642078/
https://www.ncbi.nlm.nih.gov/pubmed/36388583
http://dx.doi.org/10.3389/fpls.2022.1022169
_version_ 1784826226255331328
author Ye, Lichun
Yang, Lulu
Wang, Bo
Chen, Gang
Jiang, Liping
Hu, Zhigang
Shi, Zhaohua
Liu, Yifei
Chen, Shilin
author_facet Ye, Lichun
Yang, Lulu
Wang, Bo
Chen, Gang
Jiang, Liping
Hu, Zhigang
Shi, Zhaohua
Liu, Yifei
Chen, Shilin
author_sort Ye, Lichun
collection PubMed
description Aesculus L. (buckeye and horse chestnut) are woody plant species with important horticultural and medicinal values. Aesculus seeds are widely used as biomedicine and cosmetic ingredients due to their saponins. We report a chromosomal-scale genome of Aesculus wilsonii. Sequences amounting to a total of 579.01 Mb were assembled into 20 chromosomes. More than half of the genome (54.46%) were annotated as repetitive sequences, and 46,914 protein-coding genes were predicted. In addition to the widespread gamma event with core eudicots, a unique whole-genome duplication (WGD) event (17.69 Mya) occurred in Aesculus after buckeye differentiated from longan. Due to WGD events and tandem duplications, the related synthetic genes of triterpene saponins unique to Aesculus increased significantly. Combined with transcriptome characterization, the study preliminarily resolved the biosynthetic pathway of triterpenoid saponins like aescin in A. wilsonii genome. Analyses of the resequencing of 104 buckeye accessions revealed clear relationship between the geographic distribution and genetic differentiation of buckeye trees in China. We found that the buckeye species found in southern Shaanxi is A. wilsonii rather than A. chinensis. Population dynamics analysis further suggests that the population size and evolution of existing buckeye species have been influenced by climate fluctuations during the Pleistocene and recent domestication events. The genome of A. wilsonii and population genomics of Aesculus provide a resource for future research on Hippocastanaceae. These findings will contribute to the utilization and diversity protection of Aesculus.
format Online
Article
Text
id pubmed-9642078
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-96420782022-11-15 The Chromosome-level genome of Aesculus wilsonii provides new insights into terpenoid biosynthesis and Aesculus evolution Ye, Lichun Yang, Lulu Wang, Bo Chen, Gang Jiang, Liping Hu, Zhigang Shi, Zhaohua Liu, Yifei Chen, Shilin Front Plant Sci Plant Science Aesculus L. (buckeye and horse chestnut) are woody plant species with important horticultural and medicinal values. Aesculus seeds are widely used as biomedicine and cosmetic ingredients due to their saponins. We report a chromosomal-scale genome of Aesculus wilsonii. Sequences amounting to a total of 579.01 Mb were assembled into 20 chromosomes. More than half of the genome (54.46%) were annotated as repetitive sequences, and 46,914 protein-coding genes were predicted. In addition to the widespread gamma event with core eudicots, a unique whole-genome duplication (WGD) event (17.69 Mya) occurred in Aesculus after buckeye differentiated from longan. Due to WGD events and tandem duplications, the related synthetic genes of triterpene saponins unique to Aesculus increased significantly. Combined with transcriptome characterization, the study preliminarily resolved the biosynthetic pathway of triterpenoid saponins like aescin in A. wilsonii genome. Analyses of the resequencing of 104 buckeye accessions revealed clear relationship between the geographic distribution and genetic differentiation of buckeye trees in China. We found that the buckeye species found in southern Shaanxi is A. wilsonii rather than A. chinensis. Population dynamics analysis further suggests that the population size and evolution of existing buckeye species have been influenced by climate fluctuations during the Pleistocene and recent domestication events. The genome of A. wilsonii and population genomics of Aesculus provide a resource for future research on Hippocastanaceae. These findings will contribute to the utilization and diversity protection of Aesculus. Frontiers Media S.A. 2022-10-18 /pmc/articles/PMC9642078/ /pubmed/36388583 http://dx.doi.org/10.3389/fpls.2022.1022169 Text en Copyright © 2022 Ye, Yang, Wang, Chen, Jiang, Hu, Shi, Liu and Chen 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
Ye, Lichun
Yang, Lulu
Wang, Bo
Chen, Gang
Jiang, Liping
Hu, Zhigang
Shi, Zhaohua
Liu, Yifei
Chen, Shilin
The Chromosome-level genome of Aesculus wilsonii provides new insights into terpenoid biosynthesis and Aesculus evolution
title The Chromosome-level genome of Aesculus wilsonii provides new insights into terpenoid biosynthesis and Aesculus evolution
title_full The Chromosome-level genome of Aesculus wilsonii provides new insights into terpenoid biosynthesis and Aesculus evolution
title_fullStr The Chromosome-level genome of Aesculus wilsonii provides new insights into terpenoid biosynthesis and Aesculus evolution
title_full_unstemmed The Chromosome-level genome of Aesculus wilsonii provides new insights into terpenoid biosynthesis and Aesculus evolution
title_short The Chromosome-level genome of Aesculus wilsonii provides new insights into terpenoid biosynthesis and Aesculus evolution
title_sort chromosome-level genome of aesculus wilsonii provides new insights into terpenoid biosynthesis and aesculus evolution
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9642078/
https://www.ncbi.nlm.nih.gov/pubmed/36388583
http://dx.doi.org/10.3389/fpls.2022.1022169
work_keys_str_mv AT yelichun thechromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT yanglulu thechromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT wangbo thechromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT chengang thechromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT jiangliping thechromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT huzhigang thechromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT shizhaohua thechromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT liuyifei thechromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT chenshilin thechromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT yelichun chromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT yanglulu chromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT wangbo chromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT chengang chromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT jiangliping chromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT huzhigang chromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT shizhaohua chromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT liuyifei chromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution
AT chenshilin chromosomelevelgenomeofaesculuswilsoniiprovidesnewinsightsintoterpenoidbiosynthesisandaesculusevolution