Goldstein R M, Mallory L M, Alexander M
Appl Environ Microbiol. 1985 Oct;50(4):977-83. doi: 10.1128/aem.50.4.977-983.1985.
Pseudomonas strains capable of mineralizing 2,4-dichlorophenol (DCP) and p-nitrophenol (PNP) in culture media were isolated from soil. One DCP-metabolizing strain mineralized 1.0 and 10 micrograms of DCP but not 2.0 to 300 ng/ml in culture. When added to lake water containing 10 micrograms of DCP per ml, the bacterium did not mineralize the compound, and only after 6 days did it cause the degradation of 1.0 microgram of DCP per ml. The organism did not grow or metabolize DCP when inoculated into sterile lake water, but it multiplied in sterile lake water amended with glucose or with DCP and supplemental nutrients. Its population density declined and DCP was not mineralized when the pseudomonad was added to nonsterile sewage, but the bacterium grew in sterile DCP-amended sewage, although not causing appreciable mineralization of the test compound. Addition of the bacterium to nonsterile soil did not result in the mineralization of 10 micrograms of DCP per g, although mineralization was evident if the inoculum was added to sterile soil. A second DCP-utilizing pseudomonad failed to mineralize DCP when added to the surface of sterile soil, although activity was evident if the inoculum was mixed with the soil. A pseudomonad able to mineralize 5.0 micrograms of PNP per ml in culture did not mineralize the compound in sterile or nonsterile lake water. The bacterium destroyed PNP in sterile sewage and enhanced PNP mineralization in nonsterile sewage. When added to the surface of sterile soil, the bacterium mineralized little of the PNP present at 5.0 micrograms/g, but it was active if mixed well with the sterile soil.(ABSTRACT TRUNCATED AT 250 WORDS)
从土壤中分离出了能够在培养基中使2,4-二氯苯酚(DCP)和对硝基苯酚(PNP)矿化的假单胞菌菌株。一株能代谢DCP的菌株在培养基中可使1.0微克和10微克的DCP矿化,但对2.0至300纳克/毫升的DCP则不能。当将该菌株添加到每毫升含10微克DCP的湖水中时,它不能使该化合物矿化,仅在6天后才导致每毫升1.0微克DCP的降解。将该微生物接种到无菌湖水中时,它不生长也不代谢DCP,但在添加了葡萄糖或DCP及补充营养物的无菌湖水中能繁殖。当将假单胞菌添加到非无菌污水中时,其种群密度下降且DCP未被矿化,但该细菌在无菌的添加了DCP的污水中生长,尽管未使受试化合物发生明显矿化。将该细菌添加到非无菌土壤中不会导致每克10微克DCP的矿化,不过如果将接种物添加到无菌土壤中则矿化明显。另一株利用DCP的假单胞菌添加到无菌土壤表面时不能使DCP矿化,但若将接种物与土壤混合则活性明显。一株在培养基中能使每毫升5.0微克PNP矿化的假单胞菌在无菌或非无菌湖水中不能使该化合物矿化。该细菌在无菌污水中可破坏PNP,并在非无菌污水中增强PNP的矿化。当添加到无菌土壤表面时,该细菌对每克5.0微克的PNP矿化很少,但与无菌土壤充分混合时则具有活性。(摘要截短至250字)