Cargando…
The floral transcriptome of ylang ylang (Cananga odorata var. fruticosa) uncovers biosynthetic pathways for volatile organic compounds and a multifunctional and novel sesquiterpene synthase
The pleasant fragrance of ylang ylang varieties (Cananga odorata) is mainly due to volatile organic compounds (VOCs) produced by the flowers. Floral scents are a key factor in plant–insect interactions and are vital for successful pollination. C. odorata var. fruticosa, or dwarf ylang ylang, is a va...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2015
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4473991/ https://www.ncbi.nlm.nih.gov/pubmed/25956881 http://dx.doi.org/10.1093/jxb/erv196 |
_version_ | 1782377245351870464 |
---|---|
author | Jin, Jingjing Kim, Mi Jung Dhandapani, Savitha Tjhang, Jessica Gambino Yin, Jun-Lin Wong, Limsoon Sarojam, Rajani Chua, Nam-Hai Jang, In-Cheol |
author_facet | Jin, Jingjing Kim, Mi Jung Dhandapani, Savitha Tjhang, Jessica Gambino Yin, Jun-Lin Wong, Limsoon Sarojam, Rajani Chua, Nam-Hai Jang, In-Cheol |
author_sort | Jin, Jingjing |
collection | PubMed |
description | The pleasant fragrance of ylang ylang varieties (Cananga odorata) is mainly due to volatile organic compounds (VOCs) produced by the flowers. Floral scents are a key factor in plant–insect interactions and are vital for successful pollination. C. odorata var. fruticosa, or dwarf ylang ylang, is a variety of ylang ylang that is popularly grown in Southeast Asia as a small shrub with aromatic flowers. Here, we describe the combined use of bioinformatics and chemical analysis to discover genes for the VOC biosynthesis pathways and related genes. The scented flowers of C. odorata var. fruticosa were analysed by gas chromatography/mass spectrometry and a total of 49 VOCs were identified at four different stages of flower development. The bulk of these VOCs were terpenes, mainly sesquiterpenes. To identify the various terpene synthases (TPSs) involved in the production of these essential oils, we performed RNA sequencing on mature flowers. From the RNA sequencing data, four full-length TPSs were functionally characterized. In vitro assays showed that two of these TPSs were mono-TPSs. CoTPS1 synthesized four products corresponding to β-thujene, sabinene, β-pinene, and α-terpinene from geranyl pyrophosphate and CoTPS4 produced geraniol from geranyl pyrophosphate. The other two TPSs were identified as sesqui-TPSs. CoTPS3 catalysed the conversion of farnesyl pyrophosphate to α-bergamotene, whereas CoTPS2 was found to be a multifunctional and novel TPS that could catalyse the synthesis of three sesquiterpenes, β-ylangene, β-copaene, and β-cubebene. Additionally, the activities of the two sesqui-TPSs were confirmed in planta by transient expression of these TPS genes in Nicotiana benthamiana leaves by Agrobacterium-mediated infiltration. |
format | Online Article Text |
id | pubmed-4473991 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-44739912015-06-24 The floral transcriptome of ylang ylang (Cananga odorata var. fruticosa) uncovers biosynthetic pathways for volatile organic compounds and a multifunctional and novel sesquiterpene synthase Jin, Jingjing Kim, Mi Jung Dhandapani, Savitha Tjhang, Jessica Gambino Yin, Jun-Lin Wong, Limsoon Sarojam, Rajani Chua, Nam-Hai Jang, In-Cheol J Exp Bot Research Paper The pleasant fragrance of ylang ylang varieties (Cananga odorata) is mainly due to volatile organic compounds (VOCs) produced by the flowers. Floral scents are a key factor in plant–insect interactions and are vital for successful pollination. C. odorata var. fruticosa, or dwarf ylang ylang, is a variety of ylang ylang that is popularly grown in Southeast Asia as a small shrub with aromatic flowers. Here, we describe the combined use of bioinformatics and chemical analysis to discover genes for the VOC biosynthesis pathways and related genes. The scented flowers of C. odorata var. fruticosa were analysed by gas chromatography/mass spectrometry and a total of 49 VOCs were identified at four different stages of flower development. The bulk of these VOCs were terpenes, mainly sesquiterpenes. To identify the various terpene synthases (TPSs) involved in the production of these essential oils, we performed RNA sequencing on mature flowers. From the RNA sequencing data, four full-length TPSs were functionally characterized. In vitro assays showed that two of these TPSs were mono-TPSs. CoTPS1 synthesized four products corresponding to β-thujene, sabinene, β-pinene, and α-terpinene from geranyl pyrophosphate and CoTPS4 produced geraniol from geranyl pyrophosphate. The other two TPSs were identified as sesqui-TPSs. CoTPS3 catalysed the conversion of farnesyl pyrophosphate to α-bergamotene, whereas CoTPS2 was found to be a multifunctional and novel TPS that could catalyse the synthesis of three sesquiterpenes, β-ylangene, β-copaene, and β-cubebene. Additionally, the activities of the two sesqui-TPSs were confirmed in planta by transient expression of these TPS genes in Nicotiana benthamiana leaves by Agrobacterium-mediated infiltration. Oxford University Press 2015-07 2015-05-08 /pmc/articles/PMC4473991/ /pubmed/25956881 http://dx.doi.org/10.1093/jxb/erv196 Text en © The Author 2015. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Paper Jin, Jingjing Kim, Mi Jung Dhandapani, Savitha Tjhang, Jessica Gambino Yin, Jun-Lin Wong, Limsoon Sarojam, Rajani Chua, Nam-Hai Jang, In-Cheol The floral transcriptome of ylang ylang (Cananga odorata var. fruticosa) uncovers biosynthetic pathways for volatile organic compounds and a multifunctional and novel sesquiterpene synthase |
title | The floral transcriptome of ylang ylang (Cananga odorata var. fruticosa) uncovers biosynthetic pathways for volatile organic compounds and a multifunctional and novel sesquiterpene synthase |
title_full | The floral transcriptome of ylang ylang (Cananga odorata var. fruticosa) uncovers biosynthetic pathways for volatile organic compounds and a multifunctional and novel sesquiterpene synthase |
title_fullStr | The floral transcriptome of ylang ylang (Cananga odorata var. fruticosa) uncovers biosynthetic pathways for volatile organic compounds and a multifunctional and novel sesquiterpene synthase |
title_full_unstemmed | The floral transcriptome of ylang ylang (Cananga odorata var. fruticosa) uncovers biosynthetic pathways for volatile organic compounds and a multifunctional and novel sesquiterpene synthase |
title_short | The floral transcriptome of ylang ylang (Cananga odorata var. fruticosa) uncovers biosynthetic pathways for volatile organic compounds and a multifunctional and novel sesquiterpene synthase |
title_sort | floral transcriptome of ylang ylang (cananga odorata var. fruticosa) uncovers biosynthetic pathways for volatile organic compounds and a multifunctional and novel sesquiterpene synthase |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4473991/ https://www.ncbi.nlm.nih.gov/pubmed/25956881 http://dx.doi.org/10.1093/jxb/erv196 |
work_keys_str_mv | AT jinjingjing thefloraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT kimmijung thefloraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT dhandapanisavitha thefloraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT tjhangjessicagambino thefloraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT yinjunlin thefloraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT wonglimsoon thefloraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT sarojamrajani thefloraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT chuanamhai thefloraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT jangincheol thefloraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT jinjingjing floraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT kimmijung floraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT dhandapanisavitha floraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT tjhangjessicagambino floraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT yinjunlin floraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT wonglimsoon floraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT sarojamrajani floraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT chuanamhai floraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase AT jangincheol floraltranscriptomeofylangylangcanangaodoratavarfruticosauncoversbiosyntheticpathwaysforvolatileorganiccompoundsandamultifunctionalandnovelsesquiterpenesynthase |