生物制造
代谢工程
生物技术
生物过程
生化工程
可持续生产
计算生物学
合成生物学
生物
乙酰转移酶
工业微生物学
工业生物技术
生物生产
底盘
同化(音韵学)
可持续农业
作者
Fei Han,Yingyan Xu,Wuyue Wang,Zhen Li,Zhidong Zhang,Rubing Du,Qing Xu
标识
DOI:10.1021/acs.jafc.5c08026
摘要
One-carbon (C1) substrates are promising feedstocks for microbial bioproduction. Methylobacterium, known for its exceptional C1 utilization capacity, has emerged as a model microbial chassis for sustainable biomanufacturing. In this review, we first outline the C1 assimilation pathways in Methylobacterium and underscore its potential for producing valuable native metabolites. Furthermore, we then survey the genetic tools available for engineering this genus, including plasmid-based methods, transposon mutagenesis, homologous recombination, and CRISPR/Cas systems. Notably, recent advances in metabolic engineering have significantly expanded its biosynthetic scope, enabling the biosynthesis of diverse non-native compounds. Beyond its biomanufacturing potential, Methylobacterium also serves as a versatile plant growth-promoting bacterium, enhancing plant health and productivity through hormone synthesis, nutrient mobilization, stress mitigation, and induced systemic resistance. Collectively, this work highlights the dual potential of Methylobacterium as a sustainable microbial cell factory for biomanufacturing and a beneficial bioinoculant for agriculture.
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