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Initial Transformations in the Biodegradation of Benzothiazoles by Rhodococcus Isolates

机译:红球菌分离物对苯并噻唑类生物降解的初步转化

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摘要

Benzothiazole-2-sulfonate (BTSO3) is one of the side products occurring in 2-mercaptobenzothiazole (MBT) production wastewater. We are the first to isolate an axenic culture capable of BTSO3 degradation. The isolate was identified as a Rhodococcus erythropolis strain and also degraded 2-hydroxybenzothiazole (OBT) and benzothiazole (BT), but not MBT, which was found to inhibit the biodegradation of OBT, BT, and BTSO3. In anaerobic resting cell assays, BTSO3 was transformed into OBT in stoichiometric amounts. Under aerobic conditions, OBT was observed as an intermediate in BT breakdown and an unknown compound transiently accumulated in several assays. This product was identified as a dihydroxybenzothiazole. Benzothiazole degradation pathways seem to converge into OBT, which is then transformed further into the dihydroxy derivative.
机译:苯并噻唑-2-磺酸盐(BTSO3)是2-巯基苯并噻唑(MBT)生产废水中产生的副产物之一。我们是第一个分离出能够降解BTSO3的树胶培养物的公司。该分离株被鉴定为红球菌菌株,还降解了2-羟基苯并噻唑(OBT)和苯并噻唑(BT),但未降解MBT,MBT被发现抑制了OBT,BT和BTSO3的生物降解。在厌氧静止细胞测定中,BTSO3以化学计量的量转化为OBT。在有氧条件下,OBT被认为是BT分解的中间产物,未知化合物在数种测定中均会短暂累积。该产物被鉴定为二羟基苯并噻唑。苯并噻唑降解途径似乎收敛于OBT,然后再转化为二羟基衍生物。

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