Foght J M, Westlake D W
Department of Microbiology, University of Alberta, Edmonton, Canada.
Can J Microbiol. 1988 Oct;34(10):1135-41. doi: 10.1139/m88-200.
Enrichment cultures were established with the aromatic fraction of a crude oil and screened for aromatic-degrading pseudomonads, using a sprayed plate technique. One isolate identified as Pseudomonas sp. HL7b was chosen for further study because it oxidized several polycyclic aromatic hydrocarbons and aromatic heterocycles without an apparent lag. Using capillary gas chromatography, spectrophotometry, and radiorespirometry, it was found to be capable of mineralizing and (or) oxidizing a wide range of polycyclic aromatic hydrocarbons, S-, N-, and O-heterocyclic analogues, and alkyl polycyclic aromatic hydrocarbons, but not aliphatic hydrocarbons. The isolate displayed two colonial morphologies which correlated with variation in degradative phenotype and hydrophobicity as measured by polystyrene adherence. Four cryptic plasmids were observed in both colonial types. Pseudomonas sp. HL7b degraded dibenzothiophene co-metabolically by a recognized pathway, but this degradation was constitutive, rather than inducible as reported for other bacteria.
利用原油的芳香馏分建立富集培养物,并采用喷雾平板技术筛选芳香降解假单胞菌。其中一株鉴定为假单胞菌属HL7b的菌株被选作进一步研究对象,因为它能氧化多种多环芳烃和芳香杂环,且无明显延滞期。通过毛细管气相色谱法、分光光度法和放射性呼吸测定法发现,该菌株能够矿化和(或)氧化多种多环芳烃、S-、N-和O-杂环类似物以及烷基多环芳烃,但不能氧化脂肪烃。该菌株表现出两种菌落形态,这与通过聚苯乙烯黏附性测定的降解表型和疏水性变化相关。在两种菌落类型中均观察到四个隐蔽质粒。假单胞菌属HL7b通过一种公认的途径共代谢降解二苯并噻吩,但这种降解是组成型的,而非像其他细菌那样是诱导型的。