Wiggins B A, Alexander M
Department of Agronomy, Cornell University, Ithaca, New York 14853.
Appl Environ Microbiol. 1988 Nov;54(11):2803-7. doi: 10.1128/aem.54.11.2803-2807.1988.
A study was conducted to determine the role of concentration of the test chemical, of a second organic compound, and of mutation in the acclimation period before the mineralization of organic compounds in sewage. The acclimation period for the mineralization in sewage of 2 micrograms of 4-nitrophenol (PNP) per liter increased from 6 to 12 days in the presence of 10 mg of 2,4-dinitrophenol per liter. The extension of the acclimation period was equivalent to the time required for mineralization of 2,4-dinitrophenol. In contrast, the time for acclimation for the degradation of 2 micrograms of PNP per liter was reduced when 10 or 100 mg of phenol per liter was added. Lower phenol levels increased the acclimation period to 8 days. The length of the acclimation period for PNP mineralization decreased as the initial concentration of PNP increased from 2 micrograms to 100 mg/liter. The acclimation period for phenol mineralization was lengthened as the phenol concentration increased from 100 to 1,400 mg/liter. The length of the acclimation period for PNP and phenol biodegradation was reproducible, but it varied among replicates for the biodegradation of other nitro-substituted compounds added to sewage or lake water, suggesting that a mutation was responsible for acclimation to these other compounds. The acclimation period may thus reflect the time required for the destruction of toxins, and it also may be affected by the concentration of the test compound or the presence of other substrates.
开展了一项研究,以确定受试化学品、第二种有机化合物的浓度以及突变在污水中有机化合物矿化之前的驯化期所起的作用。在每升含有10毫克2,4 -二硝基苯酚的情况下,每升污水中2微克4 -硝基苯酚(PNP)矿化的驯化期从6天增加到了12天。驯化期的延长等同于2,4 -二硝基苯酚矿化所需的时间。相比之下,当每升添加10或100毫克苯酚时,每升2微克PNP降解的驯化时间减少了。较低的苯酚水平将驯化期延长至8天。随着PNP的初始浓度从2微克增加到100毫克/升,PNP矿化的驯化期长度缩短。随着苯酚浓度从100毫克/升增加到1400毫克/升,苯酚矿化的驯化期延长。PNP和苯酚生物降解的驯化期长度是可重复的,但对于添加到污水或湖水中的其他硝基取代化合物的生物降解,各重复之间有所不同,这表明突变是适应这些其他化合物的原因。因此,驯化期可能反映了破坏毒素所需的时间,并且它也可能受到受试化合物浓度或其他底物存在的影响。