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A novel multigene expression construct for modification of glycerol metabolism in Yarrowia lipolytica

BACKGROUND: High supply of raw, residual glycerol from biodiesel production plants promote the search for novel biotechnological methods of its utilization. In this study we attempted modification of glycerol catabolism in a nonconventional yeast species Yarrowia lipolytica through genetic engineeri...

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Autores principales: Celińska, Ewelina, Grajek, Włodzimierz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3827991/
https://www.ncbi.nlm.nih.gov/pubmed/24188724
http://dx.doi.org/10.1186/1475-2859-12-102
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author Celińska, Ewelina
Grajek, Włodzimierz
author_facet Celińska, Ewelina
Grajek, Włodzimierz
author_sort Celińska, Ewelina
collection PubMed
description BACKGROUND: High supply of raw, residual glycerol from biodiesel production plants promote the search for novel biotechnological methods of its utilization. In this study we attempted modification of glycerol catabolism in a nonconventional yeast species Yarrowia lipolytica through genetic engineering approach. RESULTS: To address this, we developed a novel genetic construct which allows transferring three heterologous genes, encoding glycerol dehydratase, its reactivator and a wide-spectrum alcohol oxidoreductase under the control of glycerol-induced promoter. The three genes, tandemly arrayed in an expression cassette with a marker gene ura3, regulatory and targeting sequences (G3P dh promoter and XPR-like terminator, 28S rDNA as a target locus), were transferred into Yarrowia lipolytica cells. The obtained recombinant strain NCYC3825 was characterized at the molecular level and with respect to its biotechnological potential. Our experiments indicated that the novel recombinant strain stably borne one copy of the expression cassette and efficiently expressed heterologous alcohol oxidoreductase, while glycerol dehydratase and its reactivator were expressed at lower level. Comparative shake flask cultivations in glucose- and glycerol-based media demonstrated higher biomass production by the recombinant strain when glycerol was the main carbon source. During bioreactor (5 L) fed-batch cultivation in glycerol-based medium, the recombinant strain was characterized by relatively high biomass and lipids accumulation (up to 42 g(DCW) L(-1), and a peak value of 38%(LIPIDS) of DCW, respectively), and production of high titers of citric acid (59 g L(-1)) and 2-phenylethanol (up to 1 g L(-1) in shake flask cultivation), which are industrially attractive bioproducts. CONCLUSIONS: Due to heterogeneous nature of the observed alterations, we postulate that the main driving force of the modified phenotype was faster growth in glycerol-based media, triggered by modifications in the red-ox balance brought by the wide spectrum oxidoreductase. Our results demonstrate the potential multidirectional use of a novel Yarrowia lipolytica strain as a microbial cell factory.
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spelling pubmed-38279912013-11-15 A novel multigene expression construct for modification of glycerol metabolism in Yarrowia lipolytica Celińska, Ewelina Grajek, Włodzimierz Microb Cell Fact Research BACKGROUND: High supply of raw, residual glycerol from biodiesel production plants promote the search for novel biotechnological methods of its utilization. In this study we attempted modification of glycerol catabolism in a nonconventional yeast species Yarrowia lipolytica through genetic engineering approach. RESULTS: To address this, we developed a novel genetic construct which allows transferring three heterologous genes, encoding glycerol dehydratase, its reactivator and a wide-spectrum alcohol oxidoreductase under the control of glycerol-induced promoter. The three genes, tandemly arrayed in an expression cassette with a marker gene ura3, regulatory and targeting sequences (G3P dh promoter and XPR-like terminator, 28S rDNA as a target locus), were transferred into Yarrowia lipolytica cells. The obtained recombinant strain NCYC3825 was characterized at the molecular level and with respect to its biotechnological potential. Our experiments indicated that the novel recombinant strain stably borne one copy of the expression cassette and efficiently expressed heterologous alcohol oxidoreductase, while glycerol dehydratase and its reactivator were expressed at lower level. Comparative shake flask cultivations in glucose- and glycerol-based media demonstrated higher biomass production by the recombinant strain when glycerol was the main carbon source. During bioreactor (5 L) fed-batch cultivation in glycerol-based medium, the recombinant strain was characterized by relatively high biomass and lipids accumulation (up to 42 g(DCW) L(-1), and a peak value of 38%(LIPIDS) of DCW, respectively), and production of high titers of citric acid (59 g L(-1)) and 2-phenylethanol (up to 1 g L(-1) in shake flask cultivation), which are industrially attractive bioproducts. CONCLUSIONS: Due to heterogeneous nature of the observed alterations, we postulate that the main driving force of the modified phenotype was faster growth in glycerol-based media, triggered by modifications in the red-ox balance brought by the wide spectrum oxidoreductase. Our results demonstrate the potential multidirectional use of a novel Yarrowia lipolytica strain as a microbial cell factory. BioMed Central 2013-11-04 /pmc/articles/PMC3827991/ /pubmed/24188724 http://dx.doi.org/10.1186/1475-2859-12-102 Text en Copyright © 2013 Celinska and Grajek; 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.
spellingShingle Research
Celińska, Ewelina
Grajek, Włodzimierz
A novel multigene expression construct for modification of glycerol metabolism in Yarrowia lipolytica
title A novel multigene expression construct for modification of glycerol metabolism in Yarrowia lipolytica
title_full A novel multigene expression construct for modification of glycerol metabolism in Yarrowia lipolytica
title_fullStr A novel multigene expression construct for modification of glycerol metabolism in Yarrowia lipolytica
title_full_unstemmed A novel multigene expression construct for modification of glycerol metabolism in Yarrowia lipolytica
title_short A novel multigene expression construct for modification of glycerol metabolism in Yarrowia lipolytica
title_sort novel multigene expression construct for modification of glycerol metabolism in yarrowia lipolytica
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3827991/
https://www.ncbi.nlm.nih.gov/pubmed/24188724
http://dx.doi.org/10.1186/1475-2859-12-102
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