Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10842898 | Progress in Lipid Research | 2013 | 14 Pages |
Abstract
With the depletion of global petroleum and its increasing price, biodiesel has been becoming one of the most promising biofuels for global fuels market. Researchers exploit oleaginous microorganisms for biodiesel production due to their short life cycle, less labor required, less affection by venue, and easier to scale up. Many oleaginous microorganisms can accumulate lipids, especially triacylglycerols (TAGs), which are the main materials for biodiesel production. This review is covering the related researches on different oleaginous microorganisms, such as yeast, mold, bacteria and microalgae, which might become the potential oil feedstocks for biodiesel production in the future, showing that biodiesel from oleaginous microorganisms has a great prospect in the development of biomass energy. Microbial oils biosynthesis process includes fatty acid synthesis approach and TAG synthesis approach. In addition, the strategies to increase lipids accumulation via metabolic engineering technology, involving the enhancement of fatty acid synthesis approach, the enhancement of TAG synthesis approach, the regulation of related TAG biosynthesis bypass approaches, the blocking of competing pathways and the multi-gene approach, are discussed in detail. It is suggested that DGAT and ME are the most promising targets for gene transformation, and reducing PEPC activity is observed to be beneficial for lipid production.
Keywords
DHAPATPAPLPAPEPAGPaseGLAPEPCDGATPDHacyl-CoA oxidaseDHAPAOXACPG3PFFAFASPDATTAGEPAACCβ-ketoacyl-ACP synthaseLPATbranching enzymesPyCG-6-PGPATCDP-DAGCDP-diacylglycerolFatty acid synthetasemalic enzymeacetyl-CoA carboxylaseArachidonic acidEicosapentaenoic acidDocosahexenoic acidFree fatty acidgamma-linolenic acidBiodieseltriacylglycerolARADHAdihydroxyacetone phosphatediacylglycerolACLDAGMicrobial oilsMicroalgaeGAPphosphatidic acid phosphatasePhosphatidatephosphoenolpyruvatePhosphoenolpyruvate carboxylasephospholipid:diacylglycerol acyltransferaseLysophosphatidateMatMetabolic engineeringOleaginous microorganismsstarch synthaseacyl-carrier proteininorganic pyrophosphatepyruvate dehydrogenasepyruvate carboxylaseFatLipidsKASGlucose 1-phosphateGlucose 6-phosphateglycerol-3-phosphateglycerol-3-phosphate acyltransferaseGlycerol 3-phosphate dehydrogenaseglyceraldehyde 3-phosphate
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Authors
Ming-Hua Liang, Jian-Guo Jiang,