Division of Environmental Science and Ecological Engineering, Korea University, Seoul, South Korea.
J Biosci Bioeng. 2010 Feb;109(2):118-23. doi: 10.1016/j.jbiosc.2009.08.001. Epub 2009 Aug 26.
Acinetobacter sp. strain DR1 is capable of growth on diesel oil. Interestingly, the degradation of diesel oil by the strain DR1 is enhanced in the presence of sodium chloride (NaCl). However, the growth rate of strain DR1 is not affected by the presence of NaCl. Northern blot analysis has also demonstrated that the effect of NaCl on the degradation of diesel oil is not attributable to increased levels of alkane hydroxylase (AlkM-type) gene expression. Rather, we have noted an increase in the exopolysaccharide (EPS) yields of strain DR1 under high NaCl conditions (9-fold). The lag-time of diesel oil biodegradation was significantly shorter in the strain DR1 with exogenous EPS than in the controls, although EPS alone does not support the growth of strain DR1. The recovery of strain DR1 when exposed to diesel oil was accelerated when exogenous EPS was added to the medium. The overproduction of EPS was also noted in the presence of diesel oil and n-hexadecane. The data indicated that EPS overproduction might play a protective role against diesel oil toxicity. Along with the results of the soil microcosm tests, the data presented herein demonstrated that NaCl-induced EPS is associated with a reduction in diesel oil toxicity, and thus increases diesel oil biodegradation in Acinetobacter sp. strain DR1.
不动杆菌属菌株 DR1 能够以柴油为生长基质。有趣的是,在添加氯化钠(NaCl)的情况下,菌株 DR1 对柴油的降解作用增强。然而,NaCl 的存在并不影响菌株 DR1 的生长速率。Northern blot 分析还表明,NaCl 对柴油降解的影响不是由于烷烃羟化酶(AlkM 型)基因表达水平的增加。相反,我们注意到在高 NaCl 条件下(9 倍),菌株 DR1 的胞外多糖(EPS)产量增加。与对照相比,添加外源性 EPS 的菌株 DR1 的柴油生物降解延滞期明显缩短,尽管 EPS 本身不能支持菌株 DR1 的生长。当向培养基中添加外源性 EPS 时,菌株 DR1 从柴油中的恢复速度加快。在存在柴油和正十六烷的情况下,也观察到 EPS 的过度产生。数据表明,EPS 的过度产生可能对柴油毒性起到保护作用。结合土壤微宇宙试验的结果,本文提供的数据表明,NaCl 诱导的 EPS 与降低柴油毒性有关,从而增加了不动杆菌属菌株 DR1 对柴油的生物降解。