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The genome of Dioscorea zingiberensis sheds light on the biosynthesis, origin and evolution of the medicinally important diosgenin saponins

Diosgenin saponins isolated from Dioscorea species such as D. zingiberensis exhibit a broad spectrum of pharmacological activities. Diosgenin, the aglycone of diosgenin saponins, is an important starting material for the production of steroidal drugs. However, how plants produce diosgenin saponins a...

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Autores principales: Li, Yi, Tan, Chao, Li, Zihao, Guo, Jingzhe, Li, Song, Chen, Xin, Wang, Chen, Dai, Xiaokang, Yang, Huan, Song, Wei, Hou, Lixiu, Xu, Jiali, Tong, Ziyu, Xu, Anran, Yuan, Xincheng, Wang, Weipeng, Yang, Qingyong, Chen, Lingling, Sun, Zongyi, Wang, Kai, Pan, Bo, Chen, Jianghua, Bao, Yinghua, Liu, Faguang, Qi, Xiaoquan, Gang, David R, Wen, Jun, Li, Jiaru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9531337/
https://www.ncbi.nlm.nih.gov/pubmed/36204203
http://dx.doi.org/10.1093/hr/uhac165
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author Li, Yi
Tan, Chao
Li, Zihao
Guo, Jingzhe
Li, Song
Chen, Xin
Wang, Chen
Dai, Xiaokang
Yang, Huan
Song, Wei
Hou, Lixiu
Xu, Jiali
Tong, Ziyu
Xu, Anran
Yuan, Xincheng
Wang, Weipeng
Yang, Qingyong
Chen, Lingling
Sun, Zongyi
Wang, Kai
Pan, Bo
Chen, Jianghua
Bao, Yinghua
Liu, Faguang
Qi, Xiaoquan
Gang, David R
Wen, Jun
Li, Jiaru
author_facet Li, Yi
Tan, Chao
Li, Zihao
Guo, Jingzhe
Li, Song
Chen, Xin
Wang, Chen
Dai, Xiaokang
Yang, Huan
Song, Wei
Hou, Lixiu
Xu, Jiali
Tong, Ziyu
Xu, Anran
Yuan, Xincheng
Wang, Weipeng
Yang, Qingyong
Chen, Lingling
Sun, Zongyi
Wang, Kai
Pan, Bo
Chen, Jianghua
Bao, Yinghua
Liu, Faguang
Qi, Xiaoquan
Gang, David R
Wen, Jun
Li, Jiaru
author_sort Li, Yi
collection PubMed
description Diosgenin saponins isolated from Dioscorea species such as D. zingiberensis exhibit a broad spectrum of pharmacological activities. Diosgenin, the aglycone of diosgenin saponins, is an important starting material for the production of steroidal drugs. However, how plants produce diosgenin saponins and the origin and evolution of the diosgenin saponin biosynthetic pathway remain a mystery. Here we report a high-quality, 629-Mb genome of D. zingiberensis anchored on 10 chromosomes with 30 322 protein-coding genes. We reveal that diosgenin is synthesized in leaves (‘source’), then converted into diosgenin saponins, and finally transported to rhizomes (‘sink’) for storage in plants. By evaluating the distribution and evolutionary patterns of diosgenin saponins in Dioscorea species, we find that diosgenin saponin-containing may be an ancestral trait in Dioscorea and is selectively retained. The results of comparative genomic analysis indicate that tandem duplication coupled with a whole-genome duplication event provided key evolutionary resources for the diosgenin saponin biosynthetic pathway in the D. zingiberensis genome. Furthermore, comparative transcriptome and metabolite analysis among 13 Dioscorea species suggests that specific gene expression patterns of pathway genes promote the differential evolution of the diosgenin saponin biosynthetic pathway in Dioscorea species. Our study provides important insights and valuable resources for further understanding the biosynthesis, evolution, and utilization of plant specialized metabolites such as diosgenin saponins.
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spelling pubmed-95313372022-10-05 The genome of Dioscorea zingiberensis sheds light on the biosynthesis, origin and evolution of the medicinally important diosgenin saponins Li, Yi Tan, Chao Li, Zihao Guo, Jingzhe Li, Song Chen, Xin Wang, Chen Dai, Xiaokang Yang, Huan Song, Wei Hou, Lixiu Xu, Jiali Tong, Ziyu Xu, Anran Yuan, Xincheng Wang, Weipeng Yang, Qingyong Chen, Lingling Sun, Zongyi Wang, Kai Pan, Bo Chen, Jianghua Bao, Yinghua Liu, Faguang Qi, Xiaoquan Gang, David R Wen, Jun Li, Jiaru Hortic Res Article Diosgenin saponins isolated from Dioscorea species such as D. zingiberensis exhibit a broad spectrum of pharmacological activities. Diosgenin, the aglycone of diosgenin saponins, is an important starting material for the production of steroidal drugs. However, how plants produce diosgenin saponins and the origin and evolution of the diosgenin saponin biosynthetic pathway remain a mystery. Here we report a high-quality, 629-Mb genome of D. zingiberensis anchored on 10 chromosomes with 30 322 protein-coding genes. We reveal that diosgenin is synthesized in leaves (‘source’), then converted into diosgenin saponins, and finally transported to rhizomes (‘sink’) for storage in plants. By evaluating the distribution and evolutionary patterns of diosgenin saponins in Dioscorea species, we find that diosgenin saponin-containing may be an ancestral trait in Dioscorea and is selectively retained. The results of comparative genomic analysis indicate that tandem duplication coupled with a whole-genome duplication event provided key evolutionary resources for the diosgenin saponin biosynthetic pathway in the D. zingiberensis genome. Furthermore, comparative transcriptome and metabolite analysis among 13 Dioscorea species suggests that specific gene expression patterns of pathway genes promote the differential evolution of the diosgenin saponin biosynthetic pathway in Dioscorea species. Our study provides important insights and valuable resources for further understanding the biosynthesis, evolution, and utilization of plant specialized metabolites such as diosgenin saponins. Oxford University Press 2022-07-25 /pmc/articles/PMC9531337/ /pubmed/36204203 http://dx.doi.org/10.1093/hr/uhac165 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Nanjing Agricultural University https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Li, Yi
Tan, Chao
Li, Zihao
Guo, Jingzhe
Li, Song
Chen, Xin
Wang, Chen
Dai, Xiaokang
Yang, Huan
Song, Wei
Hou, Lixiu
Xu, Jiali
Tong, Ziyu
Xu, Anran
Yuan, Xincheng
Wang, Weipeng
Yang, Qingyong
Chen, Lingling
Sun, Zongyi
Wang, Kai
Pan, Bo
Chen, Jianghua
Bao, Yinghua
Liu, Faguang
Qi, Xiaoquan
Gang, David R
Wen, Jun
Li, Jiaru
The genome of Dioscorea zingiberensis sheds light on the biosynthesis, origin and evolution of the medicinally important diosgenin saponins
title The genome of Dioscorea zingiberensis sheds light on the biosynthesis, origin and evolution of the medicinally important diosgenin saponins
title_full The genome of Dioscorea zingiberensis sheds light on the biosynthesis, origin and evolution of the medicinally important diosgenin saponins
title_fullStr The genome of Dioscorea zingiberensis sheds light on the biosynthesis, origin and evolution of the medicinally important diosgenin saponins
title_full_unstemmed The genome of Dioscorea zingiberensis sheds light on the biosynthesis, origin and evolution of the medicinally important diosgenin saponins
title_short The genome of Dioscorea zingiberensis sheds light on the biosynthesis, origin and evolution of the medicinally important diosgenin saponins
title_sort genome of dioscorea zingiberensis sheds light on the biosynthesis, origin and evolution of the medicinally important diosgenin saponins
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9531337/
https://www.ncbi.nlm.nih.gov/pubmed/36204203
http://dx.doi.org/10.1093/hr/uhac165
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