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首页> 外文期刊>Journal of Environmental Protection >Toluene Biodegradation by Novel Bacteria Isolated from Polluted Soil Surrounding Car Body Repair and Spray Painting Workshops
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Toluene Biodegradation by Novel Bacteria Isolated from Polluted Soil Surrounding Car Body Repair and Spray Painting Workshops

机译:新型细菌从污染土壤中分离出来的甲苯对车身的修复和喷漆车间

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Toluene can enter the environment due to various industrial activities. Toluene exposure may cause serious health risks to human and other living organisms. Thus, removal of toluene from the environment is exceptionally important in toluene-contaminated habitats. The aim of present study was to isolate and characterize toluene-utilizing bacteria from contaminated soil surrounding car body repair and painting workshops in Irbid industrial city, Jordan. Therefore, polluted soil samples (10 g) were transferred to flasks containing 99 ml of Stanier’s medium supplemented with 1% toluene and aerobically incubated at 30°C for 72 h. Subsequently, four morphologically different toluene-utilizing bacteria, designated as T1, T2, T3, and T4, were isolated. The cells of T1, T2 and T3 were Gram-positive, rod-shaped, aerobic, and positive for oxidase and catalase. However, the cells of T4 were Gram-negative, round-shaped, aerobic, negative for oxidase, and positive for catalase. Based on 16S rDNA sequencing data, isolates T1, T2 and T3 had high homology (97% - 98%) with Lysinibacillus boronitolerans, Bacillus subtilis and Rhodococcus pyridinivorans, respectively, whereas the isolate T4 had a homology of 89% with Acinetobacter schindleri, and could represent a distinct lineage within the genus Acinetobacter. The generated 16S rDNA sequences were deposited in GenBank database. After testing different physicochemical conditions, the isolates appeared to grow best at 1% toluene, 30°C and pH 6.8, with the generation times ranged between 8 - 11 h. In conclusion, we reported for the first time the identification of four novel soil bacterial species with the capacity to utilize toluene as sole source of carbon and energy from soil sites surrounding car painting workshops. The beneficial effect of the four isolates in the bioremediation of toluene from toluene polluted soil areas must be examined under in situ and ex situ conditions.
机译:由于各种工业活动,甲苯会进入环境。甲苯暴露可能对人类和其他生物造成严重的健康风险。因此,在被甲苯污染的栖息地中,从环境中去除甲苯异常重要。本研究的目的是从约旦Irbid工业城市的车身维修和喷漆车间周围的污染土壤中分离和鉴定利用甲苯的细菌。因此,将污染的土壤样品(10 g)转移到装有99 ml补充有1%甲苯的Stanier培养基的烧瓶中,并在30°C下需氧培养72小时。随后,分离出四个形态不同的利用甲苯的细菌,分别命名为T1,T2,T3和T4。 T1,T2和T3的细胞均为革兰氏阳性,杆状,好氧性细胞,氧化酶和过氧化氢酶呈阳性。但是,T4细胞是革兰氏阴性,圆形,有氧,氧化酶阴性和过氧化氢酶阳性。根据16S rDNA测序数据,分离株T1,T2和T3与硼酸纤溶菌芽孢杆菌,枯草芽孢杆菌和吡喃葡萄球菌分别具有较高的同源性(97%-98%),而分离株T4与不动杆菌,和梭状芽胞杆菌的同源性为89%。在不动杆菌属中可能代表不同的谱系。产生的16S rDNA序列保存在GenBank数据库中。在测试了不同的理化条件后,分离株在1%的甲苯,30°C和pH 6.8下表现出最佳生长,生成时间为8-11小时。总之,我们首次报告了鉴定四种新颖的土壤细菌物种的能力,这些物种具有利用甲苯作为汽车喷漆车间周围土壤场所的唯一碳和能量来源的能力。必须在原位和异位条件下检查这四种分离物对甲苯污染土壤中甲苯的生物修复的有益作用。

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