Havel J, Reineke W
Bergische Universität, Gesamthochschule Wuppertal, Chemische Mikrobiologie, F.R.G.
FEMS Microbiol Lett. 1991 Mar 1;62(2-3):163-9. doi: 10.1016/0378-1097(91)90152-z.
Cocultures consisting of strains converting chlorobiphenyls to the respective benzoates or catechols and of chlorobenzoate degraders were investigated for the mineralization of chlorobiphenyls. Stable mixed cultures were obtained with 4-chlorobiphenyl, while those with 2-chloro- or 3-chlorobiphenyl were found to be unstable and released only low yields of chloride. When both sets of enzyme sequences were combined in one organism, Pseudomonas cepacia strain JH230, by conjugative transfer of genes of the biphenyl degradation sequence, the total degradation of 2-chloro-, 3-chloro-, 4-chloro-, 2,4-dichloro-, and 3,5-dichlorobiphenyl was achieved.
研究了由将氯代联苯转化为相应苯甲酸盐或儿茶酚的菌株与氯代苯甲酸盐降解菌组成的共培养物对氯代联苯的矿化作用。用4-氯代联苯获得了稳定的混合培养物,而用2-氯代或3-氯代联苯获得的混合培养物不稳定,仅释放出低产率的氯离子。当通过联苯降解序列基因的接合转移将两组酶序列组合在一种生物体洋葱伯克霍尔德菌JH230菌株中时,实现了2-氯代、3-氯代、4-氯代、2,4-二氯代和3,5-二氯代联苯的完全降解。