Harnessing the Power of Mutagenesis and Adaptive Laboratory Evolution for High Lipid Production by Oleaginous Microalgae and Yeasts

被引:59
作者
Arora, Neha [1 ]
Yen, Hong-Wei [2 ]
Philippidis, George P. [1 ]
机构
[1] Univ S Florida, Patel Coll Global Sustainabil, 4202 E Fowler Ave, Tampa, FL 33620 USA
[2] Tunghai Univ, Dept Chem & Mat Engn, Taichung 407302, Taiwan
关键词
oleaginous; microalgae; yeast; lipid; mutagenesis; adaptive laboratory evolution; CHLOROPHYLL ANTENNA SIZE; CARBON-DIOXIDE FIXATION; CHLORELLA SP; RHODOSPORIDIUM-TORULOIDES; DOCOSAHEXAENOIC ACID; MUTANT STRAIN; CHLAMYDOMONAS-REINHARDTII; TOLERANCE MECHANISM; SCHIZOCHYTRIUM SP; SALINITY STRESS;
D O I
10.3390/su12125125
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Oleaginous microalgae and yeasts represent promising candidates for large-scale production of lipids, which can be utilized for production of drop-in biofuels, nutraceuticals, pigments, and cosmetics. However, low lipid productivity and costly downstream processing continue to hamper the commercial deployment of oleaginous microorganisms. Strain improvement can play an essential role in the development of such industrial microorganisms by increasing lipid production and hence reducing production costs. The main means of strain improvement are random mutagenesis, adaptive laboratory evolution (ALE), and rational genetic engineering. Among these, random mutagenesis and ALE are straight forward, low-cost, and do not require thorough knowledge of the microorganism's genetic composition. This paper reviews available mutagenesis and ALE techniques and screening methods to effectively select for oleaginous microalgae and yeasts with enhanced lipid yield and understand the alterations caused to metabolic pathways, which could subsequently serve as the basis for further targeted genetic engineering.
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页数:27
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