Cargando…
A moth pheromone brewery: production of (Z)-11-hexadecenol by heterologous co-expression of two biosynthetic genes from a noctuid moth in a yeast cell factory
BACKGROUND: Moths (Lepidoptera) are highly dependent on chemical communication to find a mate. Compared to conventional unselective insecticides, synthetic pheromones have successfully served to lure male moths as a specific and environmentally friendly way to control important pest species. However...
Autores principales: | , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
BioMed Central
2013
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4126085/ https://www.ncbi.nlm.nih.gov/pubmed/24330839 http://dx.doi.org/10.1186/1475-2859-12-125 |
_version_ | 1782329865528147968 |
---|---|
author | Hagström, Åsa K Wang, Hong-Lei Liénard, Marjorie A Lassance, Jean-Marc Johansson, Tomas Löfstedt, Christer |
author_facet | Hagström, Åsa K Wang, Hong-Lei Liénard, Marjorie A Lassance, Jean-Marc Johansson, Tomas Löfstedt, Christer |
author_sort | Hagström, Åsa K |
collection | PubMed |
description | BACKGROUND: Moths (Lepidoptera) are highly dependent on chemical communication to find a mate. Compared to conventional unselective insecticides, synthetic pheromones have successfully served to lure male moths as a specific and environmentally friendly way to control important pest species. However, the chemical synthesis and purification of the sex pheromone components in large amounts is a difficult and costly task. The repertoire of enzymes involved in moth pheromone biosynthesis in insecta can be seen as a library of specific catalysts that can be used to facilitate the synthesis of a particular chemical component. In this study, we present a novel approach to effectively aid in the preparation of semi-synthetic pheromone components using an engineered vector co-expressing two key biosynthetic enzymes in a simple yeast cell factory. RESULTS: We first identified and functionally characterized a ∆11 Fatty-Acyl Desaturase and a Fatty-Acyl Reductase from the Turnip moth, Agrotis segetum. The ∆11-desaturase produced predominantly Z11-16:acyl, a common pheromone component precursor, from the abundant yeast palmitic acid and the FAR transformed a series of saturated and unsaturated fatty acids into their corresponding alcohols which may serve as pheromone components in many moth species. Secondly, when we co-expressed the genes in the Brewer’s yeast Saccharomyces cerevisiae, a set of long-chain fatty acids and alcohols that are not naturally occurring in yeast were produced from inherent yeast fatty acids, and the presence of (Z)-11-hexadecenol (Z11-16:OH), demonstrated that both heterologous enzymes were active in concert. A 100 ml batch yeast culture produced on average 19.5 μg Z11-16:OH. Finally, we demonstrated that oxidized extracts from the yeast cells containing (Z)-11-hexadecenal and other aldehyde pheromone compounds elicited specific electrophysiological activity from male antennae of the Tobacco budworm, Heliothis virescens, supporting the idea that genes from different species can be used as a molecular toolbox to produce pheromone components or pheromone component precursors of potential use for control of a variety of moths. CONCLUSIONS: This study is a first proof-of-principle that it is possible to “brew” biologically active moth pheromone components through in vitro co-expression of pheromone biosynthetic enzymes, without having to provide supplementary precursors. Substrates present in the yeast alone appear to be sufficient. |
format | Online Article Text |
id | pubmed-4126085 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2013 |
publisher | BioMed Central |
record_format | MEDLINE/PubMed |
spelling | pubmed-41260852014-08-09 A moth pheromone brewery: production of (Z)-11-hexadecenol by heterologous co-expression of two biosynthetic genes from a noctuid moth in a yeast cell factory Hagström, Åsa K Wang, Hong-Lei Liénard, Marjorie A Lassance, Jean-Marc Johansson, Tomas Löfstedt, Christer Microb Cell Fact Research BACKGROUND: Moths (Lepidoptera) are highly dependent on chemical communication to find a mate. Compared to conventional unselective insecticides, synthetic pheromones have successfully served to lure male moths as a specific and environmentally friendly way to control important pest species. However, the chemical synthesis and purification of the sex pheromone components in large amounts is a difficult and costly task. The repertoire of enzymes involved in moth pheromone biosynthesis in insecta can be seen as a library of specific catalysts that can be used to facilitate the synthesis of a particular chemical component. In this study, we present a novel approach to effectively aid in the preparation of semi-synthetic pheromone components using an engineered vector co-expressing two key biosynthetic enzymes in a simple yeast cell factory. RESULTS: We first identified and functionally characterized a ∆11 Fatty-Acyl Desaturase and a Fatty-Acyl Reductase from the Turnip moth, Agrotis segetum. The ∆11-desaturase produced predominantly Z11-16:acyl, a common pheromone component precursor, from the abundant yeast palmitic acid and the FAR transformed a series of saturated and unsaturated fatty acids into their corresponding alcohols which may serve as pheromone components in many moth species. Secondly, when we co-expressed the genes in the Brewer’s yeast Saccharomyces cerevisiae, a set of long-chain fatty acids and alcohols that are not naturally occurring in yeast were produced from inherent yeast fatty acids, and the presence of (Z)-11-hexadecenol (Z11-16:OH), demonstrated that both heterologous enzymes were active in concert. A 100 ml batch yeast culture produced on average 19.5 μg Z11-16:OH. Finally, we demonstrated that oxidized extracts from the yeast cells containing (Z)-11-hexadecenal and other aldehyde pheromone compounds elicited specific electrophysiological activity from male antennae of the Tobacco budworm, Heliothis virescens, supporting the idea that genes from different species can be used as a molecular toolbox to produce pheromone components or pheromone component precursors of potential use for control of a variety of moths. CONCLUSIONS: This study is a first proof-of-principle that it is possible to “brew” biologically active moth pheromone components through in vitro co-expression of pheromone biosynthetic enzymes, without having to provide supplementary precursors. Substrates present in the yeast alone appear to be sufficient. BioMed Central 2013-12-13 /pmc/articles/PMC4126085/ /pubmed/24330839 http://dx.doi.org/10.1186/1475-2859-12-125 Text en Copyright © 2013 Hagström et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated. |
spellingShingle | Research Hagström, Åsa K Wang, Hong-Lei Liénard, Marjorie A Lassance, Jean-Marc Johansson, Tomas Löfstedt, Christer A moth pheromone brewery: production of (Z)-11-hexadecenol by heterologous co-expression of two biosynthetic genes from a noctuid moth in a yeast cell factory |
title | A moth pheromone brewery: production of (Z)-11-hexadecenol by heterologous co-expression of two biosynthetic genes from a noctuid moth in a yeast cell factory |
title_full | A moth pheromone brewery: production of (Z)-11-hexadecenol by heterologous co-expression of two biosynthetic genes from a noctuid moth in a yeast cell factory |
title_fullStr | A moth pheromone brewery: production of (Z)-11-hexadecenol by heterologous co-expression of two biosynthetic genes from a noctuid moth in a yeast cell factory |
title_full_unstemmed | A moth pheromone brewery: production of (Z)-11-hexadecenol by heterologous co-expression of two biosynthetic genes from a noctuid moth in a yeast cell factory |
title_short | A moth pheromone brewery: production of (Z)-11-hexadecenol by heterologous co-expression of two biosynthetic genes from a noctuid moth in a yeast cell factory |
title_sort | moth pheromone brewery: production of (z)-11-hexadecenol by heterologous co-expression of two biosynthetic genes from a noctuid moth in a yeast cell factory |
topic | Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4126085/ https://www.ncbi.nlm.nih.gov/pubmed/24330839 http://dx.doi.org/10.1186/1475-2859-12-125 |
work_keys_str_mv | AT hagstromasak amothpheromonebreweryproductionofz11hexadecenolbyheterologouscoexpressionoftwobiosyntheticgenesfromanoctuidmothinayeastcellfactory AT wanghonglei amothpheromonebreweryproductionofz11hexadecenolbyheterologouscoexpressionoftwobiosyntheticgenesfromanoctuidmothinayeastcellfactory AT lienardmarjoriea amothpheromonebreweryproductionofz11hexadecenolbyheterologouscoexpressionoftwobiosyntheticgenesfromanoctuidmothinayeastcellfactory AT lassancejeanmarc amothpheromonebreweryproductionofz11hexadecenolbyheterologouscoexpressionoftwobiosyntheticgenesfromanoctuidmothinayeastcellfactory AT johanssontomas amothpheromonebreweryproductionofz11hexadecenolbyheterologouscoexpressionoftwobiosyntheticgenesfromanoctuidmothinayeastcellfactory AT lofstedtchrister amothpheromonebreweryproductionofz11hexadecenolbyheterologouscoexpressionoftwobiosyntheticgenesfromanoctuidmothinayeastcellfactory AT hagstromasak mothpheromonebreweryproductionofz11hexadecenolbyheterologouscoexpressionoftwobiosyntheticgenesfromanoctuidmothinayeastcellfactory AT wanghonglei mothpheromonebreweryproductionofz11hexadecenolbyheterologouscoexpressionoftwobiosyntheticgenesfromanoctuidmothinayeastcellfactory AT lienardmarjoriea mothpheromonebreweryproductionofz11hexadecenolbyheterologouscoexpressionoftwobiosyntheticgenesfromanoctuidmothinayeastcellfactory AT lassancejeanmarc mothpheromonebreweryproductionofz11hexadecenolbyheterologouscoexpressionoftwobiosyntheticgenesfromanoctuidmothinayeastcellfactory AT johanssontomas mothpheromonebreweryproductionofz11hexadecenolbyheterologouscoexpressionoftwobiosyntheticgenesfromanoctuidmothinayeastcellfactory AT lofstedtchrister mothpheromonebreweryproductionofz11hexadecenolbyheterologouscoexpressionoftwobiosyntheticgenesfromanoctuidmothinayeastcellfactory |