Enhancing lipid productivity by modulating lipid catabolism using the CRISPR-Cas9 system in Chlamydomonas

  • Nguyen, Thu Ha Thi
  • Park, Seunghye
  • Jeong, Jooyeon
  • Shin, Ye Sol
  • Sim, Sang Jun
  • ... Jin, EonSeon
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76

초록

In response to the energy crisis microalgae are a promising feedstock for biofuel production. The use of metabolic engineering to improve yields of biofuel-related lipid components in microalgae, without affecting cell growth, is now recognized as a promising and more economically feasible approach to develop more sustainable energy sources. For this, we generatedChlamydomonasmutant strains using CRISPR-Cas9 technology to knockout a gene involved in fatty acid (FA) degradation. In the knockout mutant, total lipid accumulated up to 28% of dried biomass, while that of wild-type (WT) was 22%. This increase was also accompanied by a noticeable shift in FA composition with an increase up to 27.2% in the C18:1 proportion. In addition, these mutants showed comparable growth rate to the WT, indicating that inhibiting lipid catabolism through gene editing technology is a promising strategy to develop microalgal strains for biofuel production.

키워드

Lipid catabolismCRISPR-Cas9 technologyMetabolic engineeringChlorophytaFATTY-ACID-COMPOSITIONCHLAMYDOMONAS-REINHARDTIIMICROALGAEACYLTRANSFERASEACCUMULATIONCGI-58TRIACYLGLYCEROLBIOSYNTHESISMETABOLISMEXTRACTION
제목
Enhancing lipid productivity by modulating lipid catabolism using the CRISPR-Cas9 system in Chlamydomonas
저자
Nguyen, Thu Ha ThiPark, SeunghyeJeong, JooyeonShin, Ye SolSim, Sang JunJin, EonSeon
DOI
10.1007/s10811-020-02172-7
발행일
2020-10
유형
Article
저널명
Journal of Applied Phycology
32
5
페이지
2829 ~ 2840