Manipulation of carbon flux into fatty acid biosynthesis pathway in Dunaliella salina using AccD and ME genes to enhance lipid content and to improve produced biodiesel quality

Advanced generations of biofuels basically revolve around non-agricultural energy crops. Among those, microalgae owing to its unique characteristics i.e. natural tolerance to waste and saline water, sustainable biomass production and high lipid content (LC), is regarded by many as the ultimate choic...

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Main Authors: Ahmad Farhad Talebi, Masoud Tohidfar, Abdolreza Bagheri, Stephen R. Lyon, Kourosh Salehi-Ashtiani, Meisam Tabatabaei
Format: Article
Language:English
Published: Green Wave Publishing of Canada 2014-08-01
Series:Biofuel Research Journal
Subjects:
Online Access:http://www.biofueljournal.com/pdf_6166_deb35dce6852bde76b91b3a57ec1333f.html
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spelling doaj-a63c916544b447178858d4a1989fb9932020-11-24T23:21:13ZengGreen Wave Publishing of CanadaBiofuel Research Journal2292-87822292-87822014-08-011391976166Manipulation of carbon flux into fatty acid biosynthesis pathway in Dunaliella salina using AccD and ME genes to enhance lipid content and to improve produced biodiesel qualityAhmad Farhad Talebi0Masoud Tohidfar1Abdolreza Bagheri2Stephen R. Lyon3Kourosh Salehi-Ashtiani4Meisam Tabatabaei5Semnan university, Semnan, Iran.|Energy Crops Genetic Engineering Group, Biofuel Research Team (BRTeam), Karaj, Iran.Energy Crops Genetic Engineering Group, Biofuel Research Team (BRTeam), Karaj, Iran.|Microbial Biotechnology and Biosafety Dept, Agricultural Biotechnology Research Institute of Iran (ABRII), Karaj, Iran.Biotechnology and Plant Breeding Dept., College of Agriculture, Ferdowsi University of Mashhad, Mashhad, Iran.AlgaXperts, LLC, Milwaukee, Wisconsin, USA.Division of Science and Math, and Center for Genomics and Systems Biology (CGSB), New York University Abu Dhabi, P.O. Box 129188, Abu Dhabi, UAE.Energy Crops Genetic Engineering Group, Biofuel Research Team (BRTeam), Karaj, Iran.|Microbial Biotechnology and Biosafety Dept, Agricultural Biotechnology Research Institute of Iran (ABRII), Karaj, Iran.Advanced generations of biofuels basically revolve around non-agricultural energy crops. Among those, microalgae owing to its unique characteristics i.e. natural tolerance to waste and saline water, sustainable biomass production and high lipid content (LC), is regarded by many as the ultimate choice for the production of various biofuels such as biodiesel. In the present study, manipulation of carbon flux into fatty acid biosynthesis pathway in Dunaliella salina was achieved using pGH plasmid harboring AccD and ME genes to enhance lipid content and to improve produced biodiesel quality. The stability of transformation was confirmed by PCR after several passages. Southern hybridization of AccD probe with genomic DNA revealed stable integration of the cassette in the specific positions in the chloroplast genome with no read through transcription by indigenous promoters. Comparison of the LC and fatty acid profile of the transformed algal cell line and the control revealed the over-expression of the ME/AccD genes in the transformants leading to 12% increase in total LC and significant improvements in biodiesel properties especially by increasing algal oil oxidation stability. The whole process successfully implemented herein for transforming algal cells by genes involved in lipid production pathway could be helpful for large scale biodiesel production from microalgae.http://www.biofueljournal.com/pdf_6166_deb35dce6852bde76b91b3a57ec1333f.htmlCarbon flux manipulationMicroalgaeBiodieselGenetic engineeringChloroplast
collection DOAJ
language English
format Article
sources DOAJ
author Ahmad Farhad Talebi
Masoud Tohidfar
Abdolreza Bagheri
Stephen R. Lyon
Kourosh Salehi-Ashtiani
Meisam Tabatabaei
spellingShingle Ahmad Farhad Talebi
Masoud Tohidfar
Abdolreza Bagheri
Stephen R. Lyon
Kourosh Salehi-Ashtiani
Meisam Tabatabaei
Manipulation of carbon flux into fatty acid biosynthesis pathway in Dunaliella salina using AccD and ME genes to enhance lipid content and to improve produced biodiesel quality
Biofuel Research Journal
Carbon flux manipulation
Microalgae
Biodiesel
Genetic engineering
Chloroplast
author_facet Ahmad Farhad Talebi
Masoud Tohidfar
Abdolreza Bagheri
Stephen R. Lyon
Kourosh Salehi-Ashtiani
Meisam Tabatabaei
author_sort Ahmad Farhad Talebi
title Manipulation of carbon flux into fatty acid biosynthesis pathway in Dunaliella salina using AccD and ME genes to enhance lipid content and to improve produced biodiesel quality
title_short Manipulation of carbon flux into fatty acid biosynthesis pathway in Dunaliella salina using AccD and ME genes to enhance lipid content and to improve produced biodiesel quality
title_full Manipulation of carbon flux into fatty acid biosynthesis pathway in Dunaliella salina using AccD and ME genes to enhance lipid content and to improve produced biodiesel quality
title_fullStr Manipulation of carbon flux into fatty acid biosynthesis pathway in Dunaliella salina using AccD and ME genes to enhance lipid content and to improve produced biodiesel quality
title_full_unstemmed Manipulation of carbon flux into fatty acid biosynthesis pathway in Dunaliella salina using AccD and ME genes to enhance lipid content and to improve produced biodiesel quality
title_sort manipulation of carbon flux into fatty acid biosynthesis pathway in dunaliella salina using accd and me genes to enhance lipid content and to improve produced biodiesel quality
publisher Green Wave Publishing of Canada
series Biofuel Research Journal
issn 2292-8782
2292-8782
publishDate 2014-08-01
description Advanced generations of biofuels basically revolve around non-agricultural energy crops. Among those, microalgae owing to its unique characteristics i.e. natural tolerance to waste and saline water, sustainable biomass production and high lipid content (LC), is regarded by many as the ultimate choice for the production of various biofuels such as biodiesel. In the present study, manipulation of carbon flux into fatty acid biosynthesis pathway in Dunaliella salina was achieved using pGH plasmid harboring AccD and ME genes to enhance lipid content and to improve produced biodiesel quality. The stability of transformation was confirmed by PCR after several passages. Southern hybridization of AccD probe with genomic DNA revealed stable integration of the cassette in the specific positions in the chloroplast genome with no read through transcription by indigenous promoters. Comparison of the LC and fatty acid profile of the transformed algal cell line and the control revealed the over-expression of the ME/AccD genes in the transformants leading to 12% increase in total LC and significant improvements in biodiesel properties especially by increasing algal oil oxidation stability. The whole process successfully implemented herein for transforming algal cells by genes involved in lipid production pathway could be helpful for large scale biodiesel production from microalgae.
topic Carbon flux manipulation
Microalgae
Biodiesel
Genetic engineering
Chloroplast
url http://www.biofueljournal.com/pdf_6166_deb35dce6852bde76b91b3a57ec1333f.html
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