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Isolation of new toluene-tolerant marine strains of bacteria and characterization of their solvent-tolerance properties

机译:新型耐甲苯海洋细菌的分离及其耐溶剂性能的表征

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Aims: To isolate and characterize new marine bacteria capable of tolerating high concentrations of organic solvents, and to understand the toxic effects of these chemicals on marine bacteria. Methods and Results: Five marine bacteria able to tolerate 0.1% (v/v) toluene were isolated and characterized on the basis of their growth and survival rates in the presence of different organic solvents. The toluene-tolerant marine bacteria identified in this study could not grow in the presence of 0.1% (v/v) of several organic solvents with a log P-ow higher than that of the toluene (which in theory should be less toxic than toluene). The mechanisms underlying solvent tolerance were explored. Conclusions: Isolates of four different genera were identified as toluene-tolerant. Toxicity of a second phase of an organic solvent toward these isolates could not be predicted on the basis of the solvents' log P-ow. Significance and Impact of the Study: To improve the biodegradation rate of some water-insoluble compounds, double-phase bioreactors can be used. This type of bioreactor will require strains able to grow in a salt-containing environment and able to tolerate a second phase of an organic solvent.
机译:目的:分离和鉴定能够耐受高浓度有机溶剂的新型海洋细菌,并了解这些化学物质对海洋细菌的毒性作用。方法和结果:分离了五种能够耐受0.1%(v / v)甲苯的海洋细菌,并根据它们在不同有机溶剂存在下的生长和存活率对其进行了表征。在本研究中确定的耐甲苯海洋细菌不能在0.1%(v / v)的几种有机溶剂存在下生长,其log P-ow值高于甲苯(理论上应比甲苯毒性小) )。探索了耐溶剂性的机理。结论:四个不同属的分离物被鉴定为耐甲苯的。无法根据溶剂的log P-ow预测有机溶剂第二相对这些分离物的毒性。研究的意义和影响:为了提高某些水不溶性化合物的生物降解率,可以使用双相生物反应器。这种类型的生物反应器将需要能够在含盐环境中生长并且能够耐受有机溶剂的第二相的菌株。

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