Leisinger T
Institute of Microbiology, ETH.Zentrum LFV, Zürich, Switzerland.
Curr Opin Biotechnol. 1996 Jun;7(3):295-300. doi: 10.1016/s0958-1669(96)80033-4.
During the past year, the range of environmentally relevant chlorinated aliphatic compounds known to serve as growth substrates for pure cultures of bacteria has been extended and novel reactions for the aerobic co-metabolic transformation of chloroaliphatics have been reported. The biochemistry of chloroaliphatics degradation in the new aerobic isolates is still unexplored, but progress has been made in understanding some of the anaerobic dehalogenation reactions.
在过去一年中,已知可作为细菌纯培养物生长底物的与环境相关的氯代脂肪族化合物范围有所扩大,并且有报道称氯代脂肪族化合物发生了新的需氧共代谢转化反应。新的需氧分离物中氯代脂肪族化合物降解的生物化学仍未得到探索,但在理解一些厌氧脱卤反应方面已取得进展。