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Degradation of 4-Chlorobenzoic Acid by Arthrobacter sp

机译:关节杆菌降解4-氯苯甲酸

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A mixed population, enriched and established in a defined medium, from a sewage sludge inoculum was capable of complete mineralization of 4-chlorobenzoate. An organism, identified as Arthrobacter sp., was isolated from the consortium and shown to be capable of utilizing 4-chlorobenzoate as the sole carbon and energy source in pure culture. This organism (strain TM-1), dehalogenated 4-chlorobenzoate as the initial step in the degradative pathway. The product, 4-hydroxybenzoate, was further metabolized via protocatechuate. The ability of strain TM-1 to degrade 4-chlorobenzoate in liquid medium at 25°C was improved by the use of continuous culture and repeated sequential subculturing. Other chlorinated benzoates and the parent compound benzoate did not support growth of strain TM-1. An active cell extract was prepared and shown to dehalogenate 4-chloro-, 4-fluoro-, and 4-bromobenzoate. Dehalogenase activity had an optimum pH of 6.8 and an optimum temperature of 20°C and was inhibited by dissolved oxygen and stimulated by manganese (Mn2+). Strain improvement resulted in an increase in the specific activity of the cell extract from 0.09 to 0.85 nmol of 4-hydroxybenzoate per min per mg of protein and a decrease in the doubling time of the organism from 50 to 1.6 h.
机译:从污水污泥接种物中富集并建立在确定的培养基中的混合种群能够完全矿化4-氯苯甲酸酯。从该财团中分离出一种被鉴定为节杆菌的生物,并证明其能够在纯培养物中利用4-氯苯甲酸酯作为唯一的碳和能源。该生物(菌株TM-1)将4-氯苯甲酸酯脱卤,作为降解途径中的第一步。产物4-羟基苯甲酸酯通过原儿茶酸酯进一步代谢。通过使用连续培养和重复顺序继代培养,菌株TM-1在25°C的液体培养基中降解4-氯苯甲酸酯的能力得到了提高。其他氯化苯甲酸酯和母体苯甲酸酯不支持菌株TM-1的生长。制备了活性细胞提取物,并显示出可以使4-氯-,4-氟-和4-溴苯甲酸酯脱卤。脱卤酶活性的最适pH为6.8,最适温度为20°C,并受到溶解氧的抑制,并受到锰(Mn2 +)的刺激。菌株的改进导致细胞提取物的比活性从每毫克蛋白质每分钟0.09摩尔增加到4-羟基苯甲酸酯的0.05摩尔至0.85摩尔,生物体的倍增时间从50小时减少到1.6小时。

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