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Biodegradation of dimethylsilanediol in soils.

机译:土壤中二甲基硅烷二醇的生物降解。

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摘要

The biodegradation potential of [14C]dimethylsilanediol, the monomer unit of polydimethylsiloxane, in soils was investigated. Dimethylsilanediol was found to be biodegraded in all of the tested soils, as monitored by the production of 14CO2. When 2-propanol was added to the soil as a carbon source in addition to [14C]dimethylsilanediol, the production of 14CO2 increased. A method for the selection of primary substrates that support cometabolic degradation of a target compound was developed. By this method, the activity observed in the soils was successfully transferred to liquid culture. A fungus, Fusarium oxysporum Schlechtendahl, and a bacterium, an Arthrobacter species, were isolated from two different soils, and both microorganisms were able to cometabolize [14C]dimethylsilanediol to 14CO2 in liquid culture. In addition, the Arthrobacter sp. that was isolated grew on dimethylsulfone, and we believe that this is the first reported instance of a microorganism using dimethylsulfone as its primary carbon source. Previous evidence has shown that polydimethylsiloxane is hydrolyzed in soil to the monomer, dimethylsilanediol. Now, biodegradation of dimethylsilanediol in soil has been demonstrated.
机译:研究了聚二甲基硅氧烷的单体单元[14C]二甲基硅烷二醇在土壤中的生物降解潜力。发现二甲基硅烷二醇在所有测试土壤中均被生物降解,这通过14CO2的产生进行监测。当除了[14C]二甲基硅烷二醇外,还将2-丙醇作为碳源添加到土壤中时,14CO2的产量增加。开发了一种选择主要底物的方法,该底物支持目标化合物的新陈代谢降解。通过这种方法,在土壤中观察到的活性已成功转移到液体培养中。从两种不同的土壤中分离出一种真菌,尖孢镰刀菌(Fusarium oxysporum Schlechtendahl)和一种细菌,一种节杆菌属细菌,并且两种微生物都能够在液体培养中将[14C]二甲基硅烷二醇分解为14CO2。此外,节杆菌属。分离出的产物是在二甲基砜上生长的,我们相信这是第一个报道的以二甲基砜为主要碳源的微生物实例。先前的证据表明,聚二甲基硅氧烷在土壤中水解为单体二甲基硅烷二醇。现在,已经证明了二甲基硅烷二醇在土壤中的生物降解。

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