4.7 Article

Effects of Structural and Compositional Changes of Nanochloropsis oceania after Enzyme Treatment on EPA-Rich Lipids Extraction

期刊

MARINE DRUGS
卷 20, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/md20030160

关键词

enzyme treatment; Nannochloropsis; microalgae; lipidomics; structural and composition alteration; cell wall; cellulase; laccase; eicosapentaenoic acid; betaine lipid

资金

  1. China National Key R&D Program during the 13th Five-year Plan Period [2018YFD0401105]
  2. Young elite scientist sponsorship program by China Association for Science and Technology [YESS20200380]

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This study found that cellulase and laccase treatment of Nannochloropsis can improve lipid yields and EPA content. Cellulase and laccase degrade cell wall components, improve crystallinity, and promote the release and extraction of specific substances, leading to increased lipid yields.
Improved methods for the extraction of eicosapentaenoic acid (EPA), an essential and economically important polyunsaturated fatty acid, are urgently required. However, lipid extraction rates using food-grade solvents such as ethanol are usually low. To improve the ethanol-based extraction rate, and to elucidate the relevant mechanisms, we used cellulase and laccase to treat powdered Nannochloropsis, one of the most promising microalgal sources of EPA. Cellulase and laccase synergistically increased lipid yields by 69.31% and lipid EPA content by 42.63%, by degrading the amorphous hemicellulose and cellulose, improving crystallinity, and promoting the release and extraction of lysodiacylglyceryltrimethylhomoserine. Scanning electron microscopy showed that cell morphology was substantially altered, with cell-wall rupture, loss of cell boundaries, and the release of intracellular substances. In conclusion, Nannochloropsis lipid yields may be directly linked to cell-wall hemicellulose structure, and enzymatic treatment to alter this may improve lipid yields.

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