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pHBMT1, a BAHD-family monolignol acyltransferase, mediates lignin acylation in poplar

Poplar (Populus) lignin is naturally acylated with p-hydroxybenzoate ester moieties. However, the enzyme(s) involved in the biosynthesis of the monolignol–p-hydroxybenzoates have remained largely unknown. Here, we performed an in vitro screen of the Populus trichocarpa BAHD acyltransferase superfami...

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Autores principales: de Vries, Lisanne, MacKay, Heather A, Smith, Rebecca A, Mottiar, Yaseen, Karlen, Steven D, Unda, Faride, Muirragui, Emilia, Bingman, Craig, Vander Meulen, Kirk, Beebe, Emily T, Fox, Brian G, Ralph, John, Mansfield, Shawn D
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8825253/
https://www.ncbi.nlm.nih.gov/pubmed/34977949
http://dx.doi.org/10.1093/plphys/kiab546
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author de Vries, Lisanne
MacKay, Heather A
Smith, Rebecca A
Mottiar, Yaseen
Karlen, Steven D
Unda, Faride
Muirragui, Emilia
Bingman, Craig
Vander Meulen, Kirk
Beebe, Emily T
Fox, Brian G
Ralph, John
Mansfield, Shawn D
author_facet de Vries, Lisanne
MacKay, Heather A
Smith, Rebecca A
Mottiar, Yaseen
Karlen, Steven D
Unda, Faride
Muirragui, Emilia
Bingman, Craig
Vander Meulen, Kirk
Beebe, Emily T
Fox, Brian G
Ralph, John
Mansfield, Shawn D
author_sort de Vries, Lisanne
collection PubMed
description Poplar (Populus) lignin is naturally acylated with p-hydroxybenzoate ester moieties. However, the enzyme(s) involved in the biosynthesis of the monolignol–p-hydroxybenzoates have remained largely unknown. Here, we performed an in vitro screen of the Populus trichocarpa BAHD acyltransferase superfamily (116 genes) using a wheatgerm cell-free translation system and found five enzymes capable of producing monolignol–p-hydroxybenzoates. We then compared the transcript abundance of the five corresponding genes with p-hydroxybenzoate concentrations using naturally occurring unrelated genotypes of P. trichocarpa and revealed a positive correlation between the expression of p-hydroxybenzoyl-CoA monolig-nol transferase (pHBMT1, Potri.001G448000) and p-hydroxybenzoate levels. To test whether pHBMT1 is responsible for the biosynthesis of monolignol–p-hydroxybenzoates, we overexpressed pHBMT1 in hybrid poplar (Populus alba × P. grandidentata) (35S::pHBMT1 and C4H::pHBMT1). Using three complementary analytical methods, we showed that there was an increase in soluble monolignol–p-hydroxybenzoates and cell-wall-bound monolignol–p-hydroxybenzoates in the poplar transgenics. As these pendent groups are ester-linked, saponification releases p-hydroxybenzoate, a precursor to parabens that are used in pharmaceuticals and cosmetics. This identified gene could therefore be used to engineer lignocellulosic biomass with increased value for emerging biorefinery strategies.
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spelling pubmed-88252532022-02-09 pHBMT1, a BAHD-family monolignol acyltransferase, mediates lignin acylation in poplar de Vries, Lisanne MacKay, Heather A Smith, Rebecca A Mottiar, Yaseen Karlen, Steven D Unda, Faride Muirragui, Emilia Bingman, Craig Vander Meulen, Kirk Beebe, Emily T Fox, Brian G Ralph, John Mansfield, Shawn D Plant Physiol Regular Issue Content Poplar (Populus) lignin is naturally acylated with p-hydroxybenzoate ester moieties. However, the enzyme(s) involved in the biosynthesis of the monolignol–p-hydroxybenzoates have remained largely unknown. Here, we performed an in vitro screen of the Populus trichocarpa BAHD acyltransferase superfamily (116 genes) using a wheatgerm cell-free translation system and found five enzymes capable of producing monolignol–p-hydroxybenzoates. We then compared the transcript abundance of the five corresponding genes with p-hydroxybenzoate concentrations using naturally occurring unrelated genotypes of P. trichocarpa and revealed a positive correlation between the expression of p-hydroxybenzoyl-CoA monolig-nol transferase (pHBMT1, Potri.001G448000) and p-hydroxybenzoate levels. To test whether pHBMT1 is responsible for the biosynthesis of monolignol–p-hydroxybenzoates, we overexpressed pHBMT1 in hybrid poplar (Populus alba × P. grandidentata) (35S::pHBMT1 and C4H::pHBMT1). Using three complementary analytical methods, we showed that there was an increase in soluble monolignol–p-hydroxybenzoates and cell-wall-bound monolignol–p-hydroxybenzoates in the poplar transgenics. As these pendent groups are ester-linked, saponification releases p-hydroxybenzoate, a precursor to parabens that are used in pharmaceuticals and cosmetics. This identified gene could therefore be used to engineer lignocellulosic biomass with increased value for emerging biorefinery strategies. Oxford University Press 2021-11-22 /pmc/articles/PMC8825253/ /pubmed/34977949 http://dx.doi.org/10.1093/plphys/kiab546 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of American Society of Plant Biologists. 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 Regular Issue Content
de Vries, Lisanne
MacKay, Heather A
Smith, Rebecca A
Mottiar, Yaseen
Karlen, Steven D
Unda, Faride
Muirragui, Emilia
Bingman, Craig
Vander Meulen, Kirk
Beebe, Emily T
Fox, Brian G
Ralph, John
Mansfield, Shawn D
pHBMT1, a BAHD-family monolignol acyltransferase, mediates lignin acylation in poplar
title pHBMT1, a BAHD-family monolignol acyltransferase, mediates lignin acylation in poplar
title_full pHBMT1, a BAHD-family monolignol acyltransferase, mediates lignin acylation in poplar
title_fullStr pHBMT1, a BAHD-family monolignol acyltransferase, mediates lignin acylation in poplar
title_full_unstemmed pHBMT1, a BAHD-family monolignol acyltransferase, mediates lignin acylation in poplar
title_short pHBMT1, a BAHD-family monolignol acyltransferase, mediates lignin acylation in poplar
title_sort phbmt1, a bahd-family monolignol acyltransferase, mediates lignin acylation in poplar
topic Regular Issue Content
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8825253/
https://www.ncbi.nlm.nih.gov/pubmed/34977949
http://dx.doi.org/10.1093/plphys/kiab546
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