生物燃料
代谢工程
底盘
生化工程
化石燃料
生产(经济)
全球变暖
合成生物学
可持续生产
生物技术
温室气体
气候变化
环境科学
工程类
生物
废物管理
生态学
计算生物学
经济
生物化学
宏观经济学
酶
结构工程
作者
Rupesh Maurya,Nisarg Gohil,Snovia Nixon,Nilesh Kumar,Santosh Noronha,Debarun Dhali,Heykel Trabelsi,Khalid J. Alzahrani,Shamlan M. S. Reshamwala,Mukesh Kumar Awasthi,Suresh Ramakrishna,Vijai Singh
标识
DOI:10.1016/j.biortech.2023.128668
摘要
The ever-increasing global energy demand has led world towards negative repercussions such as depletion of fossil fuels, pollution, global warming and climate change. Designing microbial cell factories for the sustainable production of biofuels is therefore an active area of research. Different yeast cells have been successfully engineered using synthetic biology and metabolic engineering approaches for the production of various biofuels. In the present article, recent advancements in genetic engineering strategies for production of bioalcohols, isoprenoid-based biofuels and biodiesels in different yeast chassis designs are reviewed, along with challenges that must be overcome for efficient and high titre production of biofuels.
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