Chen Han, Zhang Wen-Juan, Chen Jian-Meng, Cai Yu-Bei, Li Wei
Department of Environmental Engineering, Zhejiang University, Yuquan Campus, Hangzhou 310027, China.
Bioresour Technol. 2008 Jun;99(9):3630-4. doi: 10.1016/j.biortech.2007.07.034. Epub 2007 Aug 28.
A new isolated dibenzothiophene (DBT) desulfurizing bacterium, identified as Mycobacterium sp. ZD-19 can utilize a wide range of organic sulfur compounds as a sole sulfur source. Thiophene (TH) or benzothiophene (BTH) was completely degraded by strain ZD-19 within 10h or 42 h, and 100% DBT or 4,6-dimethyldibenzothiophene (4,6-DMDBT) was removed within 50h or 56 h, respectively. Diphenylsulfide (DPS) possessed the lowest desulfurization efficiencies with 60% being transformed within 50h and 80% at 90 h. The desulfurization activities of five substrates by resting cells are in order of TH>BTH>DPS>DBT>4,6-DMDBT. In addition, when DBT and 4,6-DMDBT were mixed, they could be simultaneously desulfurized by strain ZD-19. However, DBT appeared to be attacked prior to 4,6-DMDBT. The desulfurization rate of DBT or 4,6-DMDBT in mixture is lower than they are desulfurized separately, indicating that the substrate competitive inhibition is existent when DBT and 4,6-DMDBT are mixed.
一种新分离出的二苯并噻吩(DBT)脱硫细菌,被鉴定为分枝杆菌属ZD-19,它能够利用多种有机硫化合物作为唯一硫源。噻吩(TH)或苯并噻吩(BTH)在10小时或42小时内被ZD-19菌株完全降解,100%的DBT或4,6-二甲基二苯并噻吩(4,6-DMDBT)分别在50小时或56小时内被去除。二苯硫醚(DPS)的脱硫效率最低,在50小时内有60%被转化,90小时时有80%被转化。静止细胞对五种底物的脱硫活性顺序为TH>BTH>DPS>DBT>4,6-DMDBT。此外,当DBT和4,6-DMDBT混合时,它们可被ZD-19菌株同时脱硫。然而,DBT似乎比4,6-DMDBT先受到攻击。混合物中DBT或4,6-DMDBT的脱硫速率低于它们单独脱硫时的速率,这表明当DBT和4,6-DMDBT混合时存在底物竞争抑制作用。