Nörtemann B, Baumgarten J, Rast H G, Knackmuss H J
Appl Environ Microbiol. 1986 Nov;52(5):1195-202. doi: 10.1128/aem.52.5.1195-1202.1986.
A 6-aminonaphthalene-2-sulfonic acid (6A2NS)-degrading mixed bacterial community was isolated from a sample of river Elbe water. The complete degradation of this xenobiotic compound may be described by a mutualistic interaction of two Pseudomonas strains isolated from this culture. One strain, BN6, could also grow on 6A2NS in monoculture, however, with accumulation of black polymers. This organism effected the initial conversion of 6A2NS into 5-aminosalicylate (5AS) through regioselective attack of the naphthalene skeleton in the 1,2-position. 5AS was totally degraded by another member of the community, strain BN9. After prolonged adaptation of strain BN6 to growth on 6A2NS, this organism readily converted all naphthalene-2-sulfonates with OH- or NH2-substituents in the 5-, 6-, 7-, or 8-position. The corresponding hydroxy- or aminosalicylates were excreted in stoichiometric amounts, with the exception that the metabolite from 5A2NS oxidation was not identical with 6AS.
从易北河河水样本中分离出一个能降解6-氨基萘-2-磺酸(6A2NS)的混合细菌群落。这种外源化合物的完全降解可通过从该培养物中分离出的两种假单胞菌菌株的互利共生相互作用来描述。其中一个菌株BN6,在纯培养中也能在6A2NS上生长,然而,会积累黑色聚合物。该生物体通过对萘骨架1,2位的区域选择性攻击,将6A2NS初步转化为5-氨基水杨酸(5AS)。5AS被群落中的另一个成员BN9菌株完全降解。在菌株BN6长期适应在6A2NS上生长后,该生物体很容易将5-、6-、7-或8位带有OH-或NH2取代基的所有萘-2-磺酸盐进行转化。相应的羟基或氨基水杨酸盐以化学计量的量排出,但5A2NS氧化产生的代谢物与6AS不同。