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A BAHD acyltransferase contributes to the biosynthesis of both ethyl benzoate and methyl benzoate in the flowers of Lilium oriental hybrid ‘Siberia’

Lily is a popular flower worldwide due to its elegant appearance and pleasant fragrance. Floral volatiles of lily are predominated by monoterpenes and benzenoids. While a number of genes for monoterpene biosynthesis have been characterized, the molecular mechanism underlying floral benzenoid formati...

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Autores principales: Yue, Yuechong, Wang, Lan, Li, Manyi, Liu, Fang, Yin, Junle, Huang, Lijun, Zhou, Bin, Li, Xinyue, Yu, Yunyi, Chen, Feng, Yu, Rangcai, Fan, Yanping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10570747/
https://www.ncbi.nlm.nih.gov/pubmed/37841617
http://dx.doi.org/10.3389/fpls.2023.1275960
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author Yue, Yuechong
Wang, Lan
Li, Manyi
Liu, Fang
Yin, Junle
Huang, Lijun
Zhou, Bin
Li, Xinyue
Yu, Yunyi
Chen, Feng
Yu, Rangcai
Fan, Yanping
author_facet Yue, Yuechong
Wang, Lan
Li, Manyi
Liu, Fang
Yin, Junle
Huang, Lijun
Zhou, Bin
Li, Xinyue
Yu, Yunyi
Chen, Feng
Yu, Rangcai
Fan, Yanping
author_sort Yue, Yuechong
collection PubMed
description Lily is a popular flower worldwide due to its elegant appearance and pleasant fragrance. Floral volatiles of lily are predominated by monoterpenes and benzenoids. While a number of genes for monoterpene biosynthesis have been characterized, the molecular mechanism underlying floral benzenoid formation in lily remains unclear. Here, we report on the identification and characterization of a novel BAHD acyltransferase gene that contributes to the biosynthesis of two related floral scent benzoate esters, ethyl benzoate and methyl benzoate, in the scented Lilium oriental hybrid ‘Siberia’. The emission of both methyl benzoate and ethyl benzoate in L. ‘Siberia’ was found to be tepal-specific, floral development-regulated and rhythmic. Through transcriptome profiling and bioinformatic analysis, a BAHD acyltransferase gene designated LoAAT1 was identified as the top candidate gene for the production of ethyl benzoate. In vitro enzyme assays and substrate feeding assays provide substantial evidence that LoAAT1 is responsible for the biosynthesis of ethyl benzoate. It was interesting to note that in in vitro enzyme assay, LoAAT1 can also catalyze the formation of methyl benzoate, which is typically formed by the action of benzoic acid methyltransferase (BAMT). The lack of an expressed putative BAMT gene in the flower transcriptome of L. ‘Siberia’, together with biochemical and expression evidence, led us to conclude that LoAAT1 is also responsible for, or at least contributes to, the biosynthesis of the floral scent compound methyl benzoate. This is the first report that a member of the plant BAHD acyltransferase family contributes to the production of both ethyl benzoate and methyl benzoate, presenting a new mechanism for the biosynthesis of benzoate esters.
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spelling pubmed-105707472023-10-14 A BAHD acyltransferase contributes to the biosynthesis of both ethyl benzoate and methyl benzoate in the flowers of Lilium oriental hybrid ‘Siberia’ Yue, Yuechong Wang, Lan Li, Manyi Liu, Fang Yin, Junle Huang, Lijun Zhou, Bin Li, Xinyue Yu, Yunyi Chen, Feng Yu, Rangcai Fan, Yanping Front Plant Sci Plant Science Lily is a popular flower worldwide due to its elegant appearance and pleasant fragrance. Floral volatiles of lily are predominated by monoterpenes and benzenoids. While a number of genes for monoterpene biosynthesis have been characterized, the molecular mechanism underlying floral benzenoid formation in lily remains unclear. Here, we report on the identification and characterization of a novel BAHD acyltransferase gene that contributes to the biosynthesis of two related floral scent benzoate esters, ethyl benzoate and methyl benzoate, in the scented Lilium oriental hybrid ‘Siberia’. The emission of both methyl benzoate and ethyl benzoate in L. ‘Siberia’ was found to be tepal-specific, floral development-regulated and rhythmic. Through transcriptome profiling and bioinformatic analysis, a BAHD acyltransferase gene designated LoAAT1 was identified as the top candidate gene for the production of ethyl benzoate. In vitro enzyme assays and substrate feeding assays provide substantial evidence that LoAAT1 is responsible for the biosynthesis of ethyl benzoate. It was interesting to note that in in vitro enzyme assay, LoAAT1 can also catalyze the formation of methyl benzoate, which is typically formed by the action of benzoic acid methyltransferase (BAMT). The lack of an expressed putative BAMT gene in the flower transcriptome of L. ‘Siberia’, together with biochemical and expression evidence, led us to conclude that LoAAT1 is also responsible for, or at least contributes to, the biosynthesis of the floral scent compound methyl benzoate. This is the first report that a member of the plant BAHD acyltransferase family contributes to the production of both ethyl benzoate and methyl benzoate, presenting a new mechanism for the biosynthesis of benzoate esters. Frontiers Media S.A. 2023-09-29 /pmc/articles/PMC10570747/ /pubmed/37841617 http://dx.doi.org/10.3389/fpls.2023.1275960 Text en Copyright © 2023 Yue, Wang, Li, Liu, Yin, Huang, Zhou, Li, Yu, Chen, Yu and Fan 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
Yue, Yuechong
Wang, Lan
Li, Manyi
Liu, Fang
Yin, Junle
Huang, Lijun
Zhou, Bin
Li, Xinyue
Yu, Yunyi
Chen, Feng
Yu, Rangcai
Fan, Yanping
A BAHD acyltransferase contributes to the biosynthesis of both ethyl benzoate and methyl benzoate in the flowers of Lilium oriental hybrid ‘Siberia’
title A BAHD acyltransferase contributes to the biosynthesis of both ethyl benzoate and methyl benzoate in the flowers of Lilium oriental hybrid ‘Siberia’
title_full A BAHD acyltransferase contributes to the biosynthesis of both ethyl benzoate and methyl benzoate in the flowers of Lilium oriental hybrid ‘Siberia’
title_fullStr A BAHD acyltransferase contributes to the biosynthesis of both ethyl benzoate and methyl benzoate in the flowers of Lilium oriental hybrid ‘Siberia’
title_full_unstemmed A BAHD acyltransferase contributes to the biosynthesis of both ethyl benzoate and methyl benzoate in the flowers of Lilium oriental hybrid ‘Siberia’
title_short A BAHD acyltransferase contributes to the biosynthesis of both ethyl benzoate and methyl benzoate in the flowers of Lilium oriental hybrid ‘Siberia’
title_sort bahd acyltransferase contributes to the biosynthesis of both ethyl benzoate and methyl benzoate in the flowers of lilium oriental hybrid ‘siberia’
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10570747/
https://www.ncbi.nlm.nih.gov/pubmed/37841617
http://dx.doi.org/10.3389/fpls.2023.1275960
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