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The chromosome-scale genome of Phoebe bournei reveals contrasting fates of terpene synthase (TPS)-a and TPS-b subfamilies

Terpenoids, including aromatic volatile monoterpenoids and sesquiterpenoids, function in defense against pathogens and herbivores. Phoebe trees are remarkable for their scented wood and decay resistance. Unlike other Lauraceae species investigated to date, Phoebe species predominantly accumulate ses...

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Autores principales: Han, Xiao, Zhang, Junhong, Han, Shuang, Chong, Sun Li, Meng, Guanliang, Song, Minyan, Wang, Yang, Zhou, Shengcai, Liu, Chengcheng, Lou, Luhuan, Lou, Xiongzhen, Cheng, Longjun, Lin, Erpei, Huang, Huahong, Yang, Qi, Tong, Zaikang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9700126/
https://www.ncbi.nlm.nih.gov/pubmed/35841151
http://dx.doi.org/10.1016/j.xplc.2022.100410
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author Han, Xiao
Zhang, Junhong
Han, Shuang
Chong, Sun Li
Meng, Guanliang
Song, Minyan
Wang, Yang
Zhou, Shengcai
Liu, Chengcheng
Lou, Luhuan
Lou, Xiongzhen
Cheng, Longjun
Lin, Erpei
Huang, Huahong
Yang, Qi
Tong, Zaikang
author_facet Han, Xiao
Zhang, Junhong
Han, Shuang
Chong, Sun Li
Meng, Guanliang
Song, Minyan
Wang, Yang
Zhou, Shengcai
Liu, Chengcheng
Lou, Luhuan
Lou, Xiongzhen
Cheng, Longjun
Lin, Erpei
Huang, Huahong
Yang, Qi
Tong, Zaikang
author_sort Han, Xiao
collection PubMed
description Terpenoids, including aromatic volatile monoterpenoids and sesquiterpenoids, function in defense against pathogens and herbivores. Phoebe trees are remarkable for their scented wood and decay resistance. Unlike other Lauraceae species investigated to date, Phoebe species predominantly accumulate sesquiterpenoids instead of monoterpenoids. Limited genomic data restrict the elucidation of terpenoid variation and functions. Here, we present a chromosome-scale genome assembly of a Lauraceae tree, Phoebe bournei, and identify 72 full-length terpene synthase (TPS) genes. Genome-level comparison shows pervasive lineage-specific duplication and contraction of TPS subfamilies, which have contributed to the extreme terpenoid variation within Lauraceae species. Although the TPS-a and TPS-b subfamilies were both expanded via tandem duplication in P. bournei, more TPS-a copies were retained and constitutively expressed, whereas more TPS-b copies were lost. The TPS-a genes on chromosome 8 functionally diverged to synthesize eight highly accumulated sesquiterpenes in P. bournei. The essential oil of P. bournei and its main component, β-caryophyllene, exhibited antifungal activities against the three most widespread canker pathogens of trees. The TPS-a and TPS-b subfamilies have experienced contrasting fates over the evolution of P. bournei. The abundant sesquiterpenoids produced by TPS-a proteins contribute to the excellent pathogen resistance of P. bournei trees. Overall, this study sheds light on the evolution and adaptation of terpenoids in Lauraceae and provides valuable resources for boosting plant immunity against pathogens in various trees and crops.
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spelling pubmed-97001262022-11-27 The chromosome-scale genome of Phoebe bournei reveals contrasting fates of terpene synthase (TPS)-a and TPS-b subfamilies Han, Xiao Zhang, Junhong Han, Shuang Chong, Sun Li Meng, Guanliang Song, Minyan Wang, Yang Zhou, Shengcai Liu, Chengcheng Lou, Luhuan Lou, Xiongzhen Cheng, Longjun Lin, Erpei Huang, Huahong Yang, Qi Tong, Zaikang Plant Commun Research Article Terpenoids, including aromatic volatile monoterpenoids and sesquiterpenoids, function in defense against pathogens and herbivores. Phoebe trees are remarkable for their scented wood and decay resistance. Unlike other Lauraceae species investigated to date, Phoebe species predominantly accumulate sesquiterpenoids instead of monoterpenoids. Limited genomic data restrict the elucidation of terpenoid variation and functions. Here, we present a chromosome-scale genome assembly of a Lauraceae tree, Phoebe bournei, and identify 72 full-length terpene synthase (TPS) genes. Genome-level comparison shows pervasive lineage-specific duplication and contraction of TPS subfamilies, which have contributed to the extreme terpenoid variation within Lauraceae species. Although the TPS-a and TPS-b subfamilies were both expanded via tandem duplication in P. bournei, more TPS-a copies were retained and constitutively expressed, whereas more TPS-b copies were lost. The TPS-a genes on chromosome 8 functionally diverged to synthesize eight highly accumulated sesquiterpenes in P. bournei. The essential oil of P. bournei and its main component, β-caryophyllene, exhibited antifungal activities against the three most widespread canker pathogens of trees. The TPS-a and TPS-b subfamilies have experienced contrasting fates over the evolution of P. bournei. The abundant sesquiterpenoids produced by TPS-a proteins contribute to the excellent pathogen resistance of P. bournei trees. Overall, this study sheds light on the evolution and adaptation of terpenoids in Lauraceae and provides valuable resources for boosting plant immunity against pathogens in various trees and crops. Elsevier 2022-07-16 /pmc/articles/PMC9700126/ /pubmed/35841151 http://dx.doi.org/10.1016/j.xplc.2022.100410 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Han, Xiao
Zhang, Junhong
Han, Shuang
Chong, Sun Li
Meng, Guanliang
Song, Minyan
Wang, Yang
Zhou, Shengcai
Liu, Chengcheng
Lou, Luhuan
Lou, Xiongzhen
Cheng, Longjun
Lin, Erpei
Huang, Huahong
Yang, Qi
Tong, Zaikang
The chromosome-scale genome of Phoebe bournei reveals contrasting fates of terpene synthase (TPS)-a and TPS-b subfamilies
title The chromosome-scale genome of Phoebe bournei reveals contrasting fates of terpene synthase (TPS)-a and TPS-b subfamilies
title_full The chromosome-scale genome of Phoebe bournei reveals contrasting fates of terpene synthase (TPS)-a and TPS-b subfamilies
title_fullStr The chromosome-scale genome of Phoebe bournei reveals contrasting fates of terpene synthase (TPS)-a and TPS-b subfamilies
title_full_unstemmed The chromosome-scale genome of Phoebe bournei reveals contrasting fates of terpene synthase (TPS)-a and TPS-b subfamilies
title_short The chromosome-scale genome of Phoebe bournei reveals contrasting fates of terpene synthase (TPS)-a and TPS-b subfamilies
title_sort chromosome-scale genome of phoebe bournei reveals contrasting fates of terpene synthase (tps)-a and tps-b subfamilies
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9700126/
https://www.ncbi.nlm.nih.gov/pubmed/35841151
http://dx.doi.org/10.1016/j.xplc.2022.100410
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