Smets B F, Rittmann B E, Stahl D A
Department of Civil Engineering, University of Illinois, Urbana 61801.
Appl Environ Microbiol. 1993 Oct;59(10):3430-7. doi: 10.1128/aem.59.10.3430-3437.1993.
The kinetics of the conjugal transfer of a TOL plasmid were investigated by using Pseudomonas putida PAW1 as the donor strain and P. aeruginosa PAO 1162 as the recipient strain. Short-term batch mating experiments were performed in a nonselective medium, while the evolution of the different cell types was determined by selective plating techniques. The experimental data were analyzed by using a mass action model that describes plasmid transfer kinetics. This method allowed analysis of the mating experiments by a single intrinsic kinetic parameter for conjugal plasmid transfer. Further results indicated that the specific growth rate of the donor strain antecedent to the mating experiment had a strong impact on the measured intrinsic plasmid transfer rate coefficient, which ranged from 1 x 10(-14) to 5 x 10(-13) ml per cell per min. Preliminary analysis suggested that the transfer rates of the TOL plasmid are large enough to maintain the TOL plasmid in a dense microbial community without selective pressures.
以恶臭假单胞菌PAW1作为供体菌株,铜绿假单胞菌PAO 1162作为受体菌株,研究了TOL质粒的接合转移动力学。在非选择性培养基中进行短期分批交配实验,同时通过选择性平板技术确定不同细胞类型的演变。利用描述质粒转移动力学的质量作用模型对实验数据进行分析。该方法允许通过单个固有动力学参数分析接合质粒转移的交配实验。进一步的结果表明,交配实验前供体菌株的比生长速率对测得的固有质粒转移速率系数有很大影响,该系数范围为每细胞每分钟1×10(-14)至5×10(-13)毫升。初步分析表明,TOL质粒的转移速率足以在没有选择压力的密集微生物群落中维持TOL质粒。