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Biodegradation of nicotine by newly isolated Pseudomonas sp. CS3 and its metabolites.

机译:新分离的假单胞菌 sp对尼古丁的生物降解。 CS3及其代谢物。

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Aims: Isolation and characterization of nicotine-degrading bacteria with advantages suitable for the treatment of nicotine-contaminated water and soil and detection of their metabolites. Methods and Results: A novel nicotine-degrading bacterial strain was isolated from tobacco field soil. Based on morphological and physiochemical properties and sequence of 16 S rDNA, the isolate was identified as Pseudomonas sp., designated as CS3. The optimal culture conditions of strain CS3 for nicotine degradation were 30 degrees C and pH 7.0. However, the strain showed broad pH adaptability with high nicotine-degrading activity between pH 6.0 and 10.0. Strain CS3 could decompose nicotine nearly completely within 24h in liquid culture (1000 mg L-1 nicotine) or within 72h in soil (1000-2500 mg kg-1 nicotine) and could endure up to 4000 mg L-1 nicotine in liquid media and 5000 mg kg-1 nicotine in soil. Degradation tests in flask revealed that the strain had excellent stability and high degradation activity during the repetitive degradation processes. Additionally, three intermediates, 3-(3,4-dihydro-2H-pyrrol-5-yl) pyridine, 1-methyl-5-(3-pyridyl) pyrrolidine-2-ol and cotinine, were identified by GC/MS and NMR analyses. Conclusions: The isolate CS3 showed outstanding nicotine-degrading characteristics such as high degradation efficiency, strong substrate endurance, broad pH adaptability, and stability and persistence in repetitive degradation processes and may serve as an excellent candidate for applications in the bioaugmentation process to treat nicotine-contaminated water and soil. Also, detection of nicotine metabolites suggests that strain CS3 might decompose nicotine via a unique nicotine-degradation pathway. Significance and Impact of the Study: The advantage of applying the isolated strain lies in broad pH adaptability and stability and persistence in repetitive use, the properties previously less focused in other nicotine-degrading micro-organisms. The strain might decompose nicotine via a nicotine-degradation pathway different from those of other nicotine-utilizing Pseudomonas bacteria reported earlier, another highlight in this study.
机译:目的:分离和表征可降解尼古丁的细菌,其优点是可用于处理被尼古丁污染的水和土壤以及检测其代谢产物。方法与结果:从烟草田土壤中分离出一种新型的尼古丁降解菌。根据形态和生理化学特性以及16 S rDNA的序列,分离株被鉴定为假单胞菌 sp。,命名为CS3。用于尼古丁降解的菌株CS3的最佳培养条件是30℃和pH 7.0。但是,该菌株显示了广泛的pH适应性,在pH 6.0和10.0之间具有较高的尼古丁降解活性。 CS3菌株可以在液体培养的24小时内(1000 mg L -1 尼古丁)或在土壤中的72h(1000-2500 mg kg -1 尼古丁)内几乎完全分解尼古丁,并且在液体介质中最多可耐受4000 mg L -1 尼古丁,在土壤中可耐受5000 mg kg -1 尼古丁。在烧瓶中进行的降解测试表明,该菌株在重复降解过程中具有出色的稳定性和较高的降解活性。此外,通过GC / MS鉴定了三种中间体3-(3,4-二氢-2H-吡咯-5-基)吡啶,1-甲基-5-(3-吡啶基)吡咯烷-2-醇和可替宁。 NMR分析。结论:分离物CS3表现出杰出的尼古丁降解特性,例如高降解效率,强大的底物耐受性,广泛的pH适应性以及在重复降解过程中的稳定性和持久性,可以作为在生物强化过程中​​治疗尼古丁的优秀候选者。受污染的水和土壤。而且,对尼古丁代谢物的检测表明,菌株CS3可能通过独特的尼古丁降解途径分解尼古丁。研究的意义和影响:应用分离菌株的优势在于广泛的pH适应性,重复使用的稳定性和持久性,这些特性以前很少集中在其他降解尼古丁的微生物上。该菌株可能通过不同于先前报道的其他利用尼古丁的>假单胞菌的尼古丁降解途径分解尼古丁。

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