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Isolation and Characterization of Pseudomonas spp. Strains That Efficiently Decompose Sodium Dodecyl Sulfate

机译:假单胞菌属的分离和鉴定有效分解十二烷基硫酸钠的菌株

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摘要

Due to their particular properties, detergents are widely used in household cleaning products, cosmetics, pharmaceuticals, and in agriculture as adjuvants tailoring the features of pesticides or other crop protection agents. The continuously growing use of these various products means that water soluble detergents have become one of the most problematic groups of pollutants for the aquatic and terrestrial environments. Thus it is important to identify bacteria having the ability to survive in the presence of large quantities of detergent and efficiently decompose it to non-surface active compounds. In this study, we used peaty soil sampled from a surface flow constructed wetland in a wastewater treatment plant to isolate bacteria that degrade sodium dodecyl sulfate (SDS). We identified and initially characterized 36 Pseudomonas spp. strains that varied significantly in their ability to use SDS as their sole carbon source. Five isolates having the closest taxonomic relationship to the Pseudomonas jessenii subgroup appeared to be the most efficient SDS degraders, decomposing from 80 to 100% of the SDS present in an initial concentration 1 g/L in less than 24 h. These isolates exhibited significant differences in degree of SDS degradation, their resistance to high detergent concentration (ranging from 2.5 g/L up to 10 g/L or higher), and in chemotaxis toward SDS on a plate test. Mass spectrometry revealed several SDS degradation products, 1-dodecanol being dominant; however, traces of dodecanal, 2-dodecanol, and 3-dodecanol were also observed, but no dodecanoic acid. Native polyacrylamide gel electrophoresis zymography revealed that all of the selected isolates possessed alkylsulfatase-like activity. Three isolates, AP3_10, AP3_20, and AP3_22, showed a single band on native PAGE zymography, that could be the result of alkylsulfatase activity, whereas for isolates AP3_16 and AP3_19 two bands were observed. Moreover, the AP3_22 strain exhibited a band in presence of both glucose and SDS, whereas in other isolates, the band was visible solely in presence of detergent in the culture medium. This suggests that these microorganisms isolated from peaty soil exhibit exceptional capabilities to survive in, and break down SDS, and they should be considered as a valuable source of biotechnological tools for future bioremediation and industrial applications.
机译:由于它们的特殊性能,洗涤剂被广泛用于家庭清洁产品,化妆品,药​​品和农业中,作为佐剂,可调节农药或其他农作物保护剂的特性。这些各种产品的不断增长的使用意味着水溶性洗涤剂已成为水生和陆地环境中最成问题的污染物组之一。因此,重要的是鉴定具有在大量去污剂存在下能够存活并有效地将其分解为非表面活性化合物的细菌。在这项研究中,我们使用了从废水处理厂中的地表流人工湿地采样的泥土来分离降解十二烷基硫酸钠(SDS)的细菌。我们确定并初步鉴定了36个假单胞菌属。使用SDS作为唯一碳源的能力差异很大的菌株。与耶氏假单胞菌亚组具有最接近分类学关系的五个分离物似乎是最有效的SDS降解剂,在不到24小时的时间内,以1 g / L的初始浓度存在的SDS分解率为80%至100%。这些分离物在SDS降解程度,它们对高去污剂浓度(从2.5 g / L到10 g / L或更高)的抗性以及在平板试验中对SDS的趋化性方面表现出显着差异。质谱分析显示有几种SDS降解产物,其中1-十二烷醇占主导地位。然而,也观察到痕量的十二烷,2-十二烷醇和3-十二烷醇,但没有十二烷酸。天然聚丙烯酰胺凝胶电泳酶谱显示,所有选定的分离物均具有类似烷基硫酸酯酶的活性。三种分离物AP3_10,AP3_20和AP3_22在天然PAGE酶谱上显示单个条带,这可能是烷基硫酸酯酶活性的结果,而对于分离物AP3_16和AP3_19则观察到两个条带。此外,AP3_22菌株在葡萄糖和SDS的存在下均显示一条条带,而在其他分离株中,仅在培养基中存在去污剂的情况下该条带可见。这表明从豌豆土壤中分离出的这些微生物具有出色的生存能力,并能破坏SDS,因此应将它们视为未来生物修复和工业应用的重要生物技术工具来源。

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