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Characterization of Aerobic Bacteria Involved in Degrading Polyethylene Glycol (PEG)-3400 Obtained by Plating and Enrichment Culture Techniques

机译:通过电镀和富集培养技术获得的涉及降解聚乙二醇(PEG)-3400的好氧细菌的表征

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Polyethylene glycol (PEG) 3400-degrading aerobic bacteria were isolated from tap water and wetland sediments and then characterized. Only one Sphingomonas strain was obtained in enrichment cultures from each inoculum source whereas a total of 15 bacterial strains were isolated on agar plates. Nine of the 15 isolates were confirmed as PEG 3400 degraders. Three of the 9 PEG 3400 degraders were Gram-negative bacteria belonging to the genus Pseudomonas and genus Sphingomonas. The remaining six isolates were Gram-positive bacteria belonging to genera Rhodococcus, Williamsia, Mycobacterium and Bacillus. PEG 3400 was quantified at 194 nm spectro- photometrically and, at the same time, the growth of two Gram-negative (isolates P1 and P7) and five Gram-positive (isolates P2, P3, P4, P5 and P6) PEG 3400-degrading bacteria were assayed in liquid media and on agar plates amended with PEG 3400, and also on Nutrient Agar plates and pure agar plates without PEG 3400 addition. No growth was observed on the pure agar plates for all the tested strains for a period of 31 days. All tested PEG 3400 degraders showed much lower viability in liquid culture than on the corresponding agar plates in the presence of PEG 3400. Two Gram-negative isolates P1 and P7 did not show significant growth advantage over the Gram-positive isolates both on the agar plates and in the liquid medium amended with PEG 3400. Our results suggest that diversity of PEG degrading bacteria is high in the environments and culturing techniques affect the successful isolation of the bacteria responsible for degradation.
机译:从自来水和湿地沉积物中分离出降解聚乙二醇(PEG)3400的好氧细菌,然后进行表征。从每个接种源的富集培养物中仅获得一种鞘氨醇单胞菌菌株,而在琼脂平板上分离出总共15种细菌菌株。 15个分离物中的9个被确认为PEG 3400降解物。在9种PEG 3400降解物中,有3种是革兰氏阴性细菌,属于假单胞菌属和鞘氨醇单胞菌属。其余六个分离株是属于红球菌属,威廉姆斯氏菌,分枝杆菌属和芽孢杆菌属的革兰氏阳性细菌。 PEG 3400在194 nm处进行分光光度法定量,同时,两个革兰氏阴性(分离物P1和P7)和五个革兰氏阳性(分离物P2,P3,P4,P5和P6)的生长PEG 3400-在液体培养基中和在用PEG 3400修改过的琼脂平板上,以及在不添加PEG 3400的营养琼脂平板和纯琼脂平板上分析降解细菌。在所有测试菌株中,在纯琼脂平板上未观察到生长31天。在存在PEG 3400的情况下,所有测试的PEG 3400降解物在液体培养中的存活力均比在相应的琼脂平板上低得多。两种琼脂平板分离物P1和P7均不比琼脂平板上的革兰氏阳性菌株显示出明显的生长优势。结果表明,在环境中PEG降解细菌的多样性很高,而培养技术会影响成功降解的细菌的分离。

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