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Polyploidy underlies co-option and diversification of biosynthetic triterpene pathways in the apple tribe

Whole-genome duplication (WGD) plays important roles in plant evolution and function, yet little is known about how WGD underlies metabolic diversification of natural products that bear significant medicinal properties, especially in nonmodel trees. Here, we reveal how WGD laid the foundation for co...

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Autores principales: Su, Wenbing, Jing, Yi, Lin, Shoukai, Yue, Zhen, Yang, Xianghui, Xu, Jiabao, Wu, Jincheng, Zhang, Zhike, Xia, Rui, Zhu, Jiaojiao, An, Ning, Chen, Haixin, Hong, Yanping, Yuan, Yuan, Long, Ting, Zhang, Ling, Jiang, Yuanyuan, Liu, Zongli, Zhang, Hailan, Gao, Yongshun, Liu, Yuexue, Lin, Hailan, Wang, Huicong, Yant, Levi, Lin, Shunquan, Liu, Zhenhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8157987/
https://www.ncbi.nlm.nih.gov/pubmed/33986115
http://dx.doi.org/10.1073/pnas.2101767118
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author Su, Wenbing
Jing, Yi
Lin, Shoukai
Yue, Zhen
Yang, Xianghui
Xu, Jiabao
Wu, Jincheng
Zhang, Zhike
Xia, Rui
Zhu, Jiaojiao
An, Ning
Chen, Haixin
Hong, Yanping
Yuan, Yuan
Long, Ting
Zhang, Ling
Jiang, Yuanyuan
Liu, Zongli
Zhang, Hailan
Gao, Yongshun
Liu, Yuexue
Lin, Hailan
Wang, Huicong
Yant, Levi
Lin, Shunquan
Liu, Zhenhua
author_facet Su, Wenbing
Jing, Yi
Lin, Shoukai
Yue, Zhen
Yang, Xianghui
Xu, Jiabao
Wu, Jincheng
Zhang, Zhike
Xia, Rui
Zhu, Jiaojiao
An, Ning
Chen, Haixin
Hong, Yanping
Yuan, Yuan
Long, Ting
Zhang, Ling
Jiang, Yuanyuan
Liu, Zongli
Zhang, Hailan
Gao, Yongshun
Liu, Yuexue
Lin, Hailan
Wang, Huicong
Yant, Levi
Lin, Shunquan
Liu, Zhenhua
author_sort Su, Wenbing
collection PubMed
description Whole-genome duplication (WGD) plays important roles in plant evolution and function, yet little is known about how WGD underlies metabolic diversification of natural products that bear significant medicinal properties, especially in nonmodel trees. Here, we reveal how WGD laid the foundation for co-option and differentiation of medicinally important ursane triterpene pathway duplicates, generating distinct chemotypes between species and between developmental stages in the apple tribe. After generating chromosome-level assemblies of a widely cultivated loquat variety and Gillenia trifoliata, we define differentially evolved, duplicated gene pathways and date the WGD in the apple tribe at 13.5 to 27.1 Mya, much more recent than previously thought. We then functionally characterize contrasting metabolic pathways responsible for major triterpene biosynthesis in G. trifoliata and loquat, which pre- and postdate the Maleae WGD, respectively. Our work mechanistically details the metabolic diversity that arose post-WGD and provides insights into the genomic basis of medicinal properties of loquat, which has been used in both traditional and modern medicines.
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spelling pubmed-81579872021-05-28 Polyploidy underlies co-option and diversification of biosynthetic triterpene pathways in the apple tribe Su, Wenbing Jing, Yi Lin, Shoukai Yue, Zhen Yang, Xianghui Xu, Jiabao Wu, Jincheng Zhang, Zhike Xia, Rui Zhu, Jiaojiao An, Ning Chen, Haixin Hong, Yanping Yuan, Yuan Long, Ting Zhang, Ling Jiang, Yuanyuan Liu, Zongli Zhang, Hailan Gao, Yongshun Liu, Yuexue Lin, Hailan Wang, Huicong Yant, Levi Lin, Shunquan Liu, Zhenhua Proc Natl Acad Sci U S A Biological Sciences Whole-genome duplication (WGD) plays important roles in plant evolution and function, yet little is known about how WGD underlies metabolic diversification of natural products that bear significant medicinal properties, especially in nonmodel trees. Here, we reveal how WGD laid the foundation for co-option and differentiation of medicinally important ursane triterpene pathway duplicates, generating distinct chemotypes between species and between developmental stages in the apple tribe. After generating chromosome-level assemblies of a widely cultivated loquat variety and Gillenia trifoliata, we define differentially evolved, duplicated gene pathways and date the WGD in the apple tribe at 13.5 to 27.1 Mya, much more recent than previously thought. We then functionally characterize contrasting metabolic pathways responsible for major triterpene biosynthesis in G. trifoliata and loquat, which pre- and postdate the Maleae WGD, respectively. Our work mechanistically details the metabolic diversity that arose post-WGD and provides insights into the genomic basis of medicinal properties of loquat, which has been used in both traditional and modern medicines. National Academy of Sciences 2021-05-18 2021-05-13 /pmc/articles/PMC8157987/ /pubmed/33986115 http://dx.doi.org/10.1073/pnas.2101767118 Text en Copyright © 2021 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Su, Wenbing
Jing, Yi
Lin, Shoukai
Yue, Zhen
Yang, Xianghui
Xu, Jiabao
Wu, Jincheng
Zhang, Zhike
Xia, Rui
Zhu, Jiaojiao
An, Ning
Chen, Haixin
Hong, Yanping
Yuan, Yuan
Long, Ting
Zhang, Ling
Jiang, Yuanyuan
Liu, Zongli
Zhang, Hailan
Gao, Yongshun
Liu, Yuexue
Lin, Hailan
Wang, Huicong
Yant, Levi
Lin, Shunquan
Liu, Zhenhua
Polyploidy underlies co-option and diversification of biosynthetic triterpene pathways in the apple tribe
title Polyploidy underlies co-option and diversification of biosynthetic triterpene pathways in the apple tribe
title_full Polyploidy underlies co-option and diversification of biosynthetic triterpene pathways in the apple tribe
title_fullStr Polyploidy underlies co-option and diversification of biosynthetic triterpene pathways in the apple tribe
title_full_unstemmed Polyploidy underlies co-option and diversification of biosynthetic triterpene pathways in the apple tribe
title_short Polyploidy underlies co-option and diversification of biosynthetic triterpene pathways in the apple tribe
title_sort polyploidy underlies co-option and diversification of biosynthetic triterpene pathways in the apple tribe
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8157987/
https://www.ncbi.nlm.nih.gov/pubmed/33986115
http://dx.doi.org/10.1073/pnas.2101767118
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