生物炼制
生物技术
合成生物学
生化工程
代谢工程
计算生物学
工业微生物学
营养基因学
生物
生物燃料
基因
工程类
遗传学
细菌
作者
Eva YuHua Kuo,Ru‐Yin Yang,Yuan Yu Chin,Yi‐Lin Chien,Yu Chu Chen,Cheng‐Yu Wei,Li‐Jung Kao,Yi‐Hua Chang,Yujia Li,Te‐Yuan Chen,Tse‐Min Lee
标识
DOI:10.1002/biot.202100603
摘要
Abstract Microalgae, a group of photosynthetic microorganisms rich in diverse and novel bioactive metabolites, have been explored for the production of biofuels, high value‐added compounds as food and feeds, and pharmaceutical chemicals as agents with therapeutic benefits. This article reviews the development of omics resources and genetic engineering techniques including gene transformation methodologies, mutagenesis, and genome‐editing tools in microalgae biorefinery and wastewater treatment (WWT). The introduction of these enlisted techniques has simplified the understanding of complex metabolic pathways undergoing microalgal cells. The multiomics approach of the integrated omics datasets, big data analysis, and machine learning for the discovery of objective traits and genes responsible for metabolic pathways was reviewed. Recent advances and limitations of multiomics analysis and genetic bioengineering technology to facilitate the improvement of microalgae as the dual role of WWT and biorefinery feedstock production are discussed.
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