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Lipid catabolism in microalgae

期刊

NEW PHYTOLOGIST
卷 218, 期 4, 页码 1340-1348

出版社

WILEY
DOI: 10.1111/nph.15047

关键词

acyl-CoA oxidase; autophagy; cell cycle; fatty acid beta-oxidation; lipase; lipid droplet; peroxisome; quiescence

资金

  1. French ANR
  2. CEA
  3. Junior Research Fellowship Program from French Embassy in Bangkok (Thailand)

向作者/读者索取更多资源

Lipid degradation processes are important in microalgae because survival and growth of microalgal cells under fluctuating environmental conditions require permanent remodeling or turnover of membrane lipids as well as rapid mobilization of storage lipids. Lipid catabolism comprises two major spatially and temporarily separated steps, namely lipolysis, which releases fatty acids and head groups and is catalyzed by lipases at membranes or lipid droplets, and degradation of fatty acids to acetyl-CoA, which occurs in peroxisomes through the beta-oxidation pathway in green microalgae, and can sometimes occur in mitochondria in some other algal species. Herewereview the current knowledge on the enzymes and regulatory proteins involved in lipolysis and peroxisomal beta-oxidation and highlight gaps in our understanding of lipid degradation pathways in microalgae. Metabolic use of acetyl-CoA products via glyoxylate cycle and gluconeogenesis is also reviewed. We then present the implication of various cellular processes such as vesicle trafficking, cell cycle and autophagy on lipid turnover. Finally, physiological roles and the manipulation of lipid catabolism for biotechnological applications in microalgae are discussed.

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