Wang Minzhen, Ding Mingzhu, Yuan Yingjin
Frontiers Science Center for Synthetic Biology and Key Laboratory of Systems Bioengineering (Ministry of Education), Tianjin University, Tianjin 300072, China.
School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.
Bioengineering (Basel). 2023 Mar 10;10(3):347. doi: 10.3390/bioengineering10030347.
Petroleum hydrocarbons are relatively recalcitrant compounds, and as contaminants, they are one of the most serious environmental problems. n-Alkanes are important constituents of petroleum hydrocarbons. Advances in synthetic biology and metabolic engineering strategies have made n-alkane biodegradation more designable and maneuverable for solving environmental pollution problems. In the microbial degradation of n-alkanes, more and more degradation pathways, related genes, microbes, and alkane hydroxylases have been discovered, which provide a theoretical basis for the further construction of degrading strains and microbial communities. In this review, the current advances in the microbial degradation of n-alkanes under aerobic condition are summarized in four aspects, including the biodegradation pathways and related genes, alkane hydroxylases, engineered microbial chassis, and microbial community. Especially, the microbial communities of "Alkane-degrader and Alkane-degrader" and "Alkane-degrader and Helper" provide new ideas for the degradation of petroleum hydrocarbons. Surfactant producers and nitrogen providers as a "Helper" are discussed in depth. This review will be helpful to further achieve bioremediation of oil-polluted environments rapidly.
石油烃是相对难降解的化合物,作为污染物,它们是最严重的环境问题之一。正构烷烃是石油烃的重要组成部分。合成生物学和代谢工程策略的进展使正构烷烃生物降解在解决环境污染问题方面更具可设计性和可操作性。在正构烷烃的微生物降解过程中,越来越多的降解途径、相关基因、微生物和烷烃羟化酶被发现,这为进一步构建降解菌株和微生物群落提供了理论基础。在这篇综述中,好氧条件下正构烷烃微生物降解的当前进展从四个方面进行了总结,包括生物降解途径及相关基因、烷烃羟化酶、工程化微生物底盘和微生物群落。特别是,“烷烃降解菌与烷烃降解菌”和“烷烃降解菌与辅助菌”的微生物群落为石油烃的降解提供了新思路。作为“辅助菌”的表面活性剂产生菌和氮源提供菌将被深入讨论。这篇综述将有助于进一步快速实现石油污染环境的生物修复。