AI Article Synopsis

  • Euglena gracilis can produce wax ester under low-oxygen conditions while generating ATP, mainly producing myristyl myristate as a biodiesel precursor.
  • By reversing beta-oxidation in mitochondria, the organism synthesizes fatty acids for wax ester fermentation.
  • Gene silencing of specific isozymes of the enzyme 3-ketoacyl-CoA thiolase (KAT) successfully resulted in shorter carbon chain lengths in wax ester, potentially improving the biodiesel's cold flow properties.

Article Abstract

Euglena gracilis produces wax ester under hypoxic and anaerobic culture conditions with a net synthesis of ATP. In wax ester fermentation, fatty acids are synthesized by reversing beta-oxidation in mitochondria. A major species of wax ester produced by E. gracilis is myristyl myristate (14:0-14:0Alc). Because of its shorter carbon chain length with saturated compounds, biodiesel produced from E. gracilis wax ester may have good cold flow properties with high oxidative stability. We reasoned that a slight metabolic modification would enable E. gracilis to produce a biofuel of ideal composition. In order to produce wax ester with shorter acyl chain length, we focused on isozymes of the enzyme 3-ketoacyl-CoA thiolase (KAT), a condensing enzyme of the mitochondrial fatty acid synthesis pathway in E. gracilis. We performed a gene silencing study of KAT isozymes in E. gracilis. Six KAT isozymes were identified in the E. gracilis EST database, and silencing any three of them (EgKAT1-3) altered the wax ester amount and composition. In particular, silencing EgKAT1 induced a significant compositional shift to shorter carbon chain lengths in wax ester. A model fuel mixture inferred from the composition of wax ester in EgKAT1-silenced cells showed a significant decrease in melting point compared to that of the control cells.

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Source
http://dx.doi.org/10.1007/s11745-015-4010-3DOI Listing

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