木糖
生物转化
代谢工程
木质纤维素生物量
生化工程
生物量(生态学)
生物技术
糖
木糖代谢
化学
微生物代谢
工业微生物学
木糖异构酶
发酵
代谢途径
制浆造纸工业
生物化学
可再生资源
工业生物技术
生物制品
糖酸
化学工业
作者
Tiantian Zhao,Chenyi Xu,Jingyuan Si,Xiaoman Sun,Weiming Tu,Yang Gu
标识
DOI:10.1021/acs.jafc.5c06628
摘要
Lignocellulosic biomass (LCB) is a plentiful resource, and its effective utilization is essential for mitigating resource scarcity. Xylose, the second most abundant sugar in LCB after glucose, is present in significant quantities. Nevertheless, its current utilization is markedly lower than that of glucose. Although microbial conversion of LCB into high-value products is promising, inefficient xylose metabolism remains a bottleneck. Advances in metabolic engineering and synthetic biology techniques offer powerful tools to improve microbial xylose utilization. In this review, we summarize recent research progress in microbial xylose metabolism, emphasizing xylose metabolic pathways, metabolic engineering strategies, and the production of high-value chemicals derived from xylose. We also discuss future opportunities to overcome key challenges, including efficient xylose extraction from LCB, coutilization of glucose and xylose, and enzyme and pathway optimization. These insights aim to support the development of more efficient bioconversion processes for xylose and contribute to the broader utilization of lignocellulosic feedstocks.
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