首页> 外文期刊>Environmental Science and Pollution Research >Bacterial properties changing under Triton X-100 presence in the diesel oil biodegradation systems: from surface and cellular changes to mono- and dioxygenases activities
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Bacterial properties changing under Triton X-100 presence in the diesel oil biodegradation systems: from surface and cellular changes to mono- and dioxygenases activities

机译:在Triton X-100存在下,柴油生物降解系统中的细菌特性发生变化:从表面和细胞变化到单加氧酶和双加氧酶活性

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摘要

Triton X-100, as one of the most popular surfactants used in bioremediation techniques, has been reported as an effective agent enhancing the biodegradation of hydrocarbons. However efficient, the surfactant's role in different processes that together enable the satisfying biodegradation should be thoroughly analysed and verified. In this research, we present the interactions of Triton X-100 with the bacterial surfaces (hydrophobicity and zeta potential), its influence on the enzymatic properties (considering mono- and dioxygenases) and profiles of fatty acids, which then all together were compared with the biodegradation rates. The addition of various concentrations of Triton X-100 to diesel oil system revealed different cell surface hydrophobicity (CSH) of the tested strains. The results demonstrated that for Pseudomonas stutzeri strain 9, higher diesel oil biodegradation was correlated with hydrophilic properties of the tested strain and lower Triton X-100 biodegradation. Furthermore, an increase of the branched fatty acids was observed for this strain.
机译:据报道,Triton X-100是生物修复技术中使用最广泛的表面活性剂之一,是增强烃类生物降解能力的有效试剂。无论效率如何,都应彻底分析和验证表面活性剂在不同过程中共同实现令人满意的生物降解的作用。在这项研究中,我们介绍了Triton X-100与细菌表面的相互作用(疏水性和Zeta电位),其对酶学性质的影响(考虑单加氧酶和双加氧酶)以及脂肪酸的分布,然后将它们一起与生物降解率。向柴油系统中添加各种浓度的Triton X-100揭示了测试菌株的不同细胞表面疏水性(CSH)。结果表明,对于斯氏假单胞菌菌株9,较高的柴油生物降解性与测试菌株的亲水性和较低的Triton X-100生物降解性相关。此外,对于该菌株观察到支链脂肪酸的增加。

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