固碳
光合作用
温室气体
清脆的
碳中和
生物量(生态学)
生化工程
人工光合作用
碳纤维
二氧化碳
温室
Cas9
生物技术
生物
环境科学
计算机科学
工程类
生态学
基因
植物
遗传学
生物化学
复合数
光催化
催化作用
算法
作者
Tse‐Min Lee,Jia-Yi Lin,Tsung-Han Tsai,Ru‐Yin Yang,I‐Son Ng
标识
DOI:10.1016/j.biortech.2022.128350
摘要
Carbon dioxide is the major greenhouse gas and regards as the critical issue of global warming and climate changes. The inconspicuous microalgae are responsible for 40% of carbon fixation among all photosynthetic plants along with a higher photosynthetic efficiency and convert the carbon into lipids, protein, pigments, and bioactive compounds. Genetic approach and metabolic engineering are applied to accelerate the growth rate and biomass of microalgae, hence achieve the mission of carbon neutrality. Meanwhile, CRISPR/Cas9 is efficiently to enhance the productivity of high-value compounds in microalgae for it is easier operation, more affordable and is able to regulate multiple genes simultaneously. The genetic engineering strategies provide the multidisciplinary concept to evolute and increase the CO2 fixation rate through Calvin-Benson-Bassham cycle. Therefore, the technologies, bioinformatics tools, systematic engineering approaches for carbon neutrality and circular economy are summarized and leading one step closer to the decarbonization society in this review.
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