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Higher alkyl sulfatase activity required by microbial inhabitants to remove anionic surfactants in the contaminated surface waters

机译:微生物居民需要更高的烷基硫酸酶活性,以除去污染的表面水中的阴离子表面活性剂

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摘要

Biodegradation of anionic surfactants, like sodium dodecyl sulfate (SDS) are challenged by some bacteria through the function of the enzyme alkyl sulfatases. Therefore, identifying and characterizing bacteria capable of degrading SDS with high alkyl sulfatase enzyme activity are pivotal. In this study, bacteria isolated from surfactant contaminated river water were screened for their potential to degrade SDS. Primary screening carried out by the conventional enrichment culture technique and assessment of SDS-degrading ability through methylene blue active substance assay revealed 12, out of 290, SDS-degrading surface water bacteria with maximum SDS degrading abilities of 46-94% in 24-54 h. The isolates exhibited optimum growth at SDS concentration of 1 g/L, but tolerated up to 15-75 g/L. Eleven isolates were identified as the species of Pseudomonas and one isolate was identified as Aeromonas through 16S rRNA sequencing. Proteolytic activity of alkyl sulfatases in the identified isolates was shown by using native-PAGE analysis. The determined enzyme activities changed in between 1.32 and 2.90 U/mg in the crude extracts. Preliminary experiments showed that the isolates with the alkyl sulfatase enzyme activities >= 2.50 U/mg were strong gratuitous degraders. However, their relative importance in soil, sewage, and wastewater treatment plants remains to be assessed.
机译:通过酶烷基硫酸酶的功能,一些细菌攻击阴离子表面活性剂的生物降解,如十二烷基硫酸钠(SDS)受到一些细菌的攻击。因此,鉴定和表征能够降解具有高烷基硫酸酶酶活性的SDS的细菌是关键的。在这项研究中,筛选了从表面活性剂污染的河水中分离的细菌以降解SDS。通过常规的富集培养技术和通过亚甲基蓝化物质测定进行的常规富集培养技术和评估SDS降解能力的初级筛查显示12,290中,SDS降解的表面水菌,最大SDS降解能力为46-94%,24-54 H。分离物在SDS浓度为1g / L的SDS浓度下表现出最佳生长,但耐受高达15-75克/升。将十一分离物鉴定为假单胞菌的种类,并且通过16S rRNA测序鉴定为Aeromonas的一种分离物。通过使用天然页面分析,示出了所鉴定的分离株中烷基硫酸酶的蛋白水解活性。确定的酶活性在粗提取物中改变1.32和2.90 U / mg。初步实验表明,与烷基硫酸烷基酶活性> = 2.50u / mg的分离物是强烈的粘性降解剂。然而,它们在土壤,污水和废水处理厂的相对重要性仍有待评估。

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