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Biosynthesis of Sandalwood Oil: Santalum album CYP76F Cytochromes P450 Produce Santalols and Bergamotol

Sandalwood oil is one of the world’s most highly prized essential oils, appearing in many high-end perfumes and fragrances. Extracted from the mature heartwood of several Santalum species, sandalwood oil is comprised mainly of sesquiterpene olefins and alcohols. Four sesquiterpenols, α-, β-, and epi...

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Autores principales: Diaz-Chavez, Maria L., Moniodis, Jessie, Madilao, Lufiani L., Jancsik, Sharon, Keeling, Christopher I., Barbour, Elizabeth L., Ghisalberti, Emilio L., Plummer, Julie A., Jones, Christopher G., Bohlmann, Jörg
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3854609/
https://www.ncbi.nlm.nih.gov/pubmed/24324844
http://dx.doi.org/10.1371/journal.pone.0075053
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author Diaz-Chavez, Maria L.
Moniodis, Jessie
Madilao, Lufiani L.
Jancsik, Sharon
Keeling, Christopher I.
Barbour, Elizabeth L.
Ghisalberti, Emilio L.
Plummer, Julie A.
Jones, Christopher G.
Bohlmann, Jörg
author_facet Diaz-Chavez, Maria L.
Moniodis, Jessie
Madilao, Lufiani L.
Jancsik, Sharon
Keeling, Christopher I.
Barbour, Elizabeth L.
Ghisalberti, Emilio L.
Plummer, Julie A.
Jones, Christopher G.
Bohlmann, Jörg
author_sort Diaz-Chavez, Maria L.
collection PubMed
description Sandalwood oil is one of the world’s most highly prized essential oils, appearing in many high-end perfumes and fragrances. Extracted from the mature heartwood of several Santalum species, sandalwood oil is comprised mainly of sesquiterpene olefins and alcohols. Four sesquiterpenols, α-, β-, and epi-β-santalol and α-exo-bergamotol, make up approximately 90% of the oil of Santalum album. These compounds are the hydroxylated analogues of α-, β-, and epi-β-santalene and α-exo-bergamotene. By mining a transcriptome database of S. album for candidate cytochrome P450 genes, we cloned and characterized cDNAs encoding a small family of ten cytochrome P450-dependent monooxygenases annotated as SaCYP76F37v1, SaCYP76F37v2, SaCYP76F38v1, SaCYP76F38v2, SaCYP76F39v1, SaCYP76F39v2, SaCYP76F40, SaCYP76F41, SaCYP76F42, and SaCYP76F43. Nine of these genes were functionally characterized using in vitro assays and yeast in vivo assays to encode santalene/bergamotene oxidases and bergamotene oxidases. These results provide a foundation for production of sandalwood oil for the fragrance industry by means of metabolic engineering, as demonstrated with proof-of-concept formation of santalols and bergamotol in engineered yeast cells, simultaneously addressing conservation challenges by reducing pressure on supply of sandalwood from native forests.
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spelling pubmed-38546092013-12-09 Biosynthesis of Sandalwood Oil: Santalum album CYP76F Cytochromes P450 Produce Santalols and Bergamotol Diaz-Chavez, Maria L. Moniodis, Jessie Madilao, Lufiani L. Jancsik, Sharon Keeling, Christopher I. Barbour, Elizabeth L. Ghisalberti, Emilio L. Plummer, Julie A. Jones, Christopher G. Bohlmann, Jörg PLoS One Research Article Sandalwood oil is one of the world’s most highly prized essential oils, appearing in many high-end perfumes and fragrances. Extracted from the mature heartwood of several Santalum species, sandalwood oil is comprised mainly of sesquiterpene olefins and alcohols. Four sesquiterpenols, α-, β-, and epi-β-santalol and α-exo-bergamotol, make up approximately 90% of the oil of Santalum album. These compounds are the hydroxylated analogues of α-, β-, and epi-β-santalene and α-exo-bergamotene. By mining a transcriptome database of S. album for candidate cytochrome P450 genes, we cloned and characterized cDNAs encoding a small family of ten cytochrome P450-dependent monooxygenases annotated as SaCYP76F37v1, SaCYP76F37v2, SaCYP76F38v1, SaCYP76F38v2, SaCYP76F39v1, SaCYP76F39v2, SaCYP76F40, SaCYP76F41, SaCYP76F42, and SaCYP76F43. Nine of these genes were functionally characterized using in vitro assays and yeast in vivo assays to encode santalene/bergamotene oxidases and bergamotene oxidases. These results provide a foundation for production of sandalwood oil for the fragrance industry by means of metabolic engineering, as demonstrated with proof-of-concept formation of santalols and bergamotol in engineered yeast cells, simultaneously addressing conservation challenges by reducing pressure on supply of sandalwood from native forests. Public Library of Science 2013-09-18 /pmc/articles/PMC3854609/ /pubmed/24324844 http://dx.doi.org/10.1371/journal.pone.0075053 Text en © 2013 Diaz-Chavez et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Diaz-Chavez, Maria L.
Moniodis, Jessie
Madilao, Lufiani L.
Jancsik, Sharon
Keeling, Christopher I.
Barbour, Elizabeth L.
Ghisalberti, Emilio L.
Plummer, Julie A.
Jones, Christopher G.
Bohlmann, Jörg
Biosynthesis of Sandalwood Oil: Santalum album CYP76F Cytochromes P450 Produce Santalols and Bergamotol
title Biosynthesis of Sandalwood Oil: Santalum album CYP76F Cytochromes P450 Produce Santalols and Bergamotol
title_full Biosynthesis of Sandalwood Oil: Santalum album CYP76F Cytochromes P450 Produce Santalols and Bergamotol
title_fullStr Biosynthesis of Sandalwood Oil: Santalum album CYP76F Cytochromes P450 Produce Santalols and Bergamotol
title_full_unstemmed Biosynthesis of Sandalwood Oil: Santalum album CYP76F Cytochromes P450 Produce Santalols and Bergamotol
title_short Biosynthesis of Sandalwood Oil: Santalum album CYP76F Cytochromes P450 Produce Santalols and Bergamotol
title_sort biosynthesis of sandalwood oil: santalum album cyp76f cytochromes p450 produce santalols and bergamotol
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3854609/
https://www.ncbi.nlm.nih.gov/pubmed/24324844
http://dx.doi.org/10.1371/journal.pone.0075053
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