4.6 Review

Enhancing microalgal lipid accumulation for biofuel production

Journal

FRONTIERS IN MICROBIOLOGY
Volume 13, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fmicb.2022.1024441

Keywords

microalgae; lipid enhancement; biofuel production; metabolic engineering; process optimization

Categories

Funding

  1. Open Project Funding of the State Key Laboratory of Biocatalysis and Enzyme Engineering [SKLBEE2020015]
  2. CAS Key Laboratory of Bio-based Materials, Chinese Academy of Sciences [BMF-2020-08]
  3. Natural Science Foundation of the Jiangsu Higher Education Institutions of China [20KJB180012]
  4. China Scholarship Council [202108320126]

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Microalgae have the potential to produce biofuels, but high production costs hinder commercialization. Enhancing lipid accumulation through genetic modifications and optimization strategies can improve the economics of microalgal biofuel production. This review discusses the application of multiple molecular strategies to construct high performance microalgal strains and optimize processes for enhanced lipid accumulation, while emphasizing the opportunities and challenges of strategic integration.
Microalgae have high lipid accumulation capacity, high growth rate and high photosynthetic efficiency which are considered as one of the most promising alternative sustainable feedstocks for producing lipid-based biofuels. However, commercialization feasibility of microalgal biofuel production is still conditioned to the high production cost. Enhancement of lipid accumulation in microalgae play a significant role in boosting the economics of biofuel production based on microalgal lipid. The major challenge of enhancing microalgal lipid accumulation lies in overcoming the trade-off between microalgal cell growth and lipid accumulation. Substantial approaches including genetic modifications of microalgal strains by metabolic engineering and process regulations of microalgae cultivation by integrating multiple optimization strategies widely applied in industrial microbiology have been investigated. In the present review, we critically discuss recent trends in the application of multiple molecular strategies to construct high performance microalgal strains by metabolic engineering and synergistic strategies of process optimization and stress operation to enhance microalgal lipid accumulation for biofuel production. Additionally, this review aims to emphasize the opportunities and challenges regarding scaled application of the strategic integration and its viability to make microalgal biofuel production a commercial reality in the near future.

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