Law Aaron M J, Aitken Michael D
Department of Environmental Sciences and Engineering, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599, USA.
Appl Environ Microbiol. 2003 Oct;69(10):5968-73. doi: 10.1128/AEM.69.10.5968-5973.2003.
Bacterial chemotaxis has the potential to increase the rate of degradation of chemoattractants, but its influence on degradation of hydrophobic attractants initially dissolved in a non-aqueous-phase liquid (NAPL) has not been examined. We studied the effect of chemotaxis by Pseudomonas putida G7 on naphthalene mass transfer and degradation in a system in which the naphthalene was dissolved in a model NAPL. Chemotaxis by wild-type P. putida G7 increased the rates of naphthalene desorption and degradation relative to rates observed with nonchemotactic and nonmotile mutant strains. While biodegradation alone influenced the rate of substrate desorption by increasing the concentration gradient against which desorption occurred, chemotaxis created an even steeper gradient as the cells accumulated near the NAPL source. The extent to which chemotaxis affected naphthalene desorption and degradation depended on the initial bacterial and naphthalene concentrations, reflecting the influences of these variables on concentration gradients and on the relative rates of mass transfer and biodegradation. The results of this study suggest that chemotaxis can substantially increase the rates of mass transfer and degradation of NAPL-associated hydrophobic pollutants.
细菌趋化作用有可能提高化学引诱剂的降解速率,但其对最初溶解于非水相液体(NAPL)中的疏水性引诱剂降解的影响尚未得到研究。我们研究了恶臭假单胞菌G7的趋化作用对萘传质及降解的影响,该体系中萘溶解于一种模拟NAPL中。相对于非趋化和不运动突变菌株所观察到的速率,野生型恶臭假单胞菌G7的趋化作用提高了萘的解吸和降解速率。虽然单独的生物降解通过增加解吸所对抗的浓度梯度来影响底物解吸速率,但趋化作用在细胞在NAPL源附近积累时产生了更陡的梯度。趋化作用影响萘解吸和降解的程度取决于初始细菌浓度和萘浓度,反映了这些变量对浓度梯度以及传质和生物降解相对速率的影响。本研究结果表明,趋化作用可大幅提高与NAPL相关的疏水性污染物的传质和降解速率。