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A cytosolic bifunctional geranyl/farnesyl diphosphate synthase provides MVA-derived GPP for geraniol biosynthesis in rose flowers

Geraniol derived from essential oils of various plant species is widely used in the cosmetic and perfume industries. It is also an essential trait of the pleasant smell of rose flowers. In contrast to other monoterpenes which are produced in plastids via the methyl erythritol phosphate pathway, gera...

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Autores principales: Conart, Corentin, Bomzan, Dikki Pedenla, Huang, Xing-Qi, Bassard, Jean-Etienne, Paramita, Saretta N., Saint-Marcoux, Denis, Rius-Bony, Aurélie, Hivert, Gal, Anchisi, Anthony, Schaller, Hubert, Hamama, Latifa, Magnard, Jean-Louis, Lipko, Agata, Swiezewska, Ewa, Jame, Patrick, Riveill, Geneviève, Hibrand-Saint Oyant, Laurence, Rohmer, Michel, Lewinsohn, Efraim, Dudareva, Natalia, Baudino, Sylvie, Caissard, Jean-Claude, Boachon, Benoît
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10175749/
https://www.ncbi.nlm.nih.gov/pubmed/37126706
http://dx.doi.org/10.1073/pnas.2221440120
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author Conart, Corentin
Bomzan, Dikki Pedenla
Huang, Xing-Qi
Bassard, Jean-Etienne
Paramita, Saretta N.
Saint-Marcoux, Denis
Rius-Bony, Aurélie
Hivert, Gal
Anchisi, Anthony
Schaller, Hubert
Hamama, Latifa
Magnard, Jean-Louis
Lipko, Agata
Swiezewska, Ewa
Jame, Patrick
Riveill, Geneviève
Hibrand-Saint Oyant, Laurence
Rohmer, Michel
Lewinsohn, Efraim
Dudareva, Natalia
Baudino, Sylvie
Caissard, Jean-Claude
Boachon, Benoît
author_facet Conart, Corentin
Bomzan, Dikki Pedenla
Huang, Xing-Qi
Bassard, Jean-Etienne
Paramita, Saretta N.
Saint-Marcoux, Denis
Rius-Bony, Aurélie
Hivert, Gal
Anchisi, Anthony
Schaller, Hubert
Hamama, Latifa
Magnard, Jean-Louis
Lipko, Agata
Swiezewska, Ewa
Jame, Patrick
Riveill, Geneviève
Hibrand-Saint Oyant, Laurence
Rohmer, Michel
Lewinsohn, Efraim
Dudareva, Natalia
Baudino, Sylvie
Caissard, Jean-Claude
Boachon, Benoît
author_sort Conart, Corentin
collection PubMed
description Geraniol derived from essential oils of various plant species is widely used in the cosmetic and perfume industries. It is also an essential trait of the pleasant smell of rose flowers. In contrast to other monoterpenes which are produced in plastids via the methyl erythritol phosphate pathway, geraniol biosynthesis in roses relies on cytosolic NUDX1 hydrolase which dephosphorylates geranyl diphosphate (GPP). However, the metabolic origin of cytosolic GPP remains unknown. By feeding Rosa chinensis “Old Blush” flowers with pathway-specific precursors and inhibitors, combined with metabolic profiling and functional characterization of enzymes in vitro and in planta, we show that geraniol is synthesized through the cytosolic mevalonate (MVA) pathway by a bifunctional geranyl/farnesyl diphosphate synthase, RcG/FPPS1, producing both GPP and farnesyl diphosphate (FPP). The downregulation and overexpression of RcG/FPPS1 in rose petals affected not only geraniol and germacrene D emissions but also dihydro-β-ionol, the latter due to metabolic cross talk of RcG/FPPS1-dependent isoprenoid intermediates trafficking from the cytosol to plastids. Phylogenetic analysis together with functional characterization of G/FPPS orthologs revealed that the G/FPPS activity is conserved among Rosaceae species. Site-directed mutagenesis and molecular dynamic simulations enabled to identify two conserved amino acids that evolved from ancestral FPPSs and contribute to GPP/FPP product specificity. Overall, this study elucidates the origin of the cytosolic GPP for NUDX1-dependent geraniol production, provides insights into the emergence of the RcG/FPPS1 GPPS activity from the ancestral FPPSs, and shows that RcG/FPPS1 plays a key role in the biosynthesis of volatile terpenoid compounds in rose flowers.
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spelling pubmed-101757492023-11-01 A cytosolic bifunctional geranyl/farnesyl diphosphate synthase provides MVA-derived GPP for geraniol biosynthesis in rose flowers Conart, Corentin Bomzan, Dikki Pedenla Huang, Xing-Qi Bassard, Jean-Etienne Paramita, Saretta N. Saint-Marcoux, Denis Rius-Bony, Aurélie Hivert, Gal Anchisi, Anthony Schaller, Hubert Hamama, Latifa Magnard, Jean-Louis Lipko, Agata Swiezewska, Ewa Jame, Patrick Riveill, Geneviève Hibrand-Saint Oyant, Laurence Rohmer, Michel Lewinsohn, Efraim Dudareva, Natalia Baudino, Sylvie Caissard, Jean-Claude Boachon, Benoît Proc Natl Acad Sci U S A Biological Sciences Geraniol derived from essential oils of various plant species is widely used in the cosmetic and perfume industries. It is also an essential trait of the pleasant smell of rose flowers. In contrast to other monoterpenes which are produced in plastids via the methyl erythritol phosphate pathway, geraniol biosynthesis in roses relies on cytosolic NUDX1 hydrolase which dephosphorylates geranyl diphosphate (GPP). However, the metabolic origin of cytosolic GPP remains unknown. By feeding Rosa chinensis “Old Blush” flowers with pathway-specific precursors and inhibitors, combined with metabolic profiling and functional characterization of enzymes in vitro and in planta, we show that geraniol is synthesized through the cytosolic mevalonate (MVA) pathway by a bifunctional geranyl/farnesyl diphosphate synthase, RcG/FPPS1, producing both GPP and farnesyl diphosphate (FPP). The downregulation and overexpression of RcG/FPPS1 in rose petals affected not only geraniol and germacrene D emissions but also dihydro-β-ionol, the latter due to metabolic cross talk of RcG/FPPS1-dependent isoprenoid intermediates trafficking from the cytosol to plastids. Phylogenetic analysis together with functional characterization of G/FPPS orthologs revealed that the G/FPPS activity is conserved among Rosaceae species. Site-directed mutagenesis and molecular dynamic simulations enabled to identify two conserved amino acids that evolved from ancestral FPPSs and contribute to GPP/FPP product specificity. Overall, this study elucidates the origin of the cytosolic GPP for NUDX1-dependent geraniol production, provides insights into the emergence of the RcG/FPPS1 GPPS activity from the ancestral FPPSs, and shows that RcG/FPPS1 plays a key role in the biosynthesis of volatile terpenoid compounds in rose flowers. National Academy of Sciences 2023-05-01 2023-05-09 /pmc/articles/PMC10175749/ /pubmed/37126706 http://dx.doi.org/10.1073/pnas.2221440120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This 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
Conart, Corentin
Bomzan, Dikki Pedenla
Huang, Xing-Qi
Bassard, Jean-Etienne
Paramita, Saretta N.
Saint-Marcoux, Denis
Rius-Bony, Aurélie
Hivert, Gal
Anchisi, Anthony
Schaller, Hubert
Hamama, Latifa
Magnard, Jean-Louis
Lipko, Agata
Swiezewska, Ewa
Jame, Patrick
Riveill, Geneviève
Hibrand-Saint Oyant, Laurence
Rohmer, Michel
Lewinsohn, Efraim
Dudareva, Natalia
Baudino, Sylvie
Caissard, Jean-Claude
Boachon, Benoît
A cytosolic bifunctional geranyl/farnesyl diphosphate synthase provides MVA-derived GPP for geraniol biosynthesis in rose flowers
title A cytosolic bifunctional geranyl/farnesyl diphosphate synthase provides MVA-derived GPP for geraniol biosynthesis in rose flowers
title_full A cytosolic bifunctional geranyl/farnesyl diphosphate synthase provides MVA-derived GPP for geraniol biosynthesis in rose flowers
title_fullStr A cytosolic bifunctional geranyl/farnesyl diphosphate synthase provides MVA-derived GPP for geraniol biosynthesis in rose flowers
title_full_unstemmed A cytosolic bifunctional geranyl/farnesyl diphosphate synthase provides MVA-derived GPP for geraniol biosynthesis in rose flowers
title_short A cytosolic bifunctional geranyl/farnesyl diphosphate synthase provides MVA-derived GPP for geraniol biosynthesis in rose flowers
title_sort cytosolic bifunctional geranyl/farnesyl diphosphate synthase provides mva-derived gpp for geraniol biosynthesis in rose flowers
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10175749/
https://www.ncbi.nlm.nih.gov/pubmed/37126706
http://dx.doi.org/10.1073/pnas.2221440120
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