Biodegradation of plastic materials obtained from solid waste dumpsites in Nigeria, using native bacterial strains

Q3 Agricultural and Biological Sciences
B. Ojiego, Obianuju P. Ilo, F. Dantanko, Shauibu A. Abdullahi, Ibrahim M. K. Gadzama, P. Bolorunduro, Elijah Ekah Ella, Gideon I Ogu
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引用次数: 1

Abstract

Plastic packaging materials constitute a major potential environmental pollutant due to their slow degradation rates. This study aimed to isolate the plastic-degrading bacteria from the solid waste dumpsites of Abuja, Nigeria. Soil samples (n= 72) and plastic materials (bottles and bags) were collected from the dumpsites using soil augers and manual picking, respectively. Bacteriological analysis of the soil samples revealed the recovery of a total of 54 bacterial isolates, which were distributed among the genera of; Proteus sp. (33.3 %), Providencia sp. (29.63 %), Pseudomonas sp. (16.67 %), Bacillus sp. (9.26 %), Micrococcus sp. (5.56 %), Escherichia coli (1.85 %), Enterobacter sp. (1.85 %), and Serratia sp. (1.85 %). The bacterial isolates were inoculated into a series of shake flasks containing nutrient broth and pre-sterilized strips (1×1 cm) of plastic bags (0.05-0.0514 g) and plastic bottles (0.05-0.0529 g), and then incubated at 30 o C for 60 d to monitor their biodegradation using the weight loss method. The strips of bottles (0.58-49.00 %) were more susceptible to biodegradation than the plastic bags (0.78-15.40 %) after 60 d of incubation. The results demonstrated that about 6 of the bacterial isolates belong to the two genera of Proteus sp. and Providencia spp., and were considered the best bio-degraders. Molecular characterization of these potent isolates has identified them as Proteus mirabilis strain PPB3 (49.00 %), Proteus mirabilis strain UPMSD3 (32.07 %), Proteus mirabilis strain HH133 (20.41 %), Proteus mirabilis strain SSBIKEN (15.40 %), Providencia vermicola strain M4 (14.96 %), and Providencia vermicola strain 11 (12.20 %). These strains could be considered as potential biodegradation agents for the plastic materials that are prevalent in dumpsites.
利用本地菌株对尼日利亚固体垃圾场获得的塑料材料进行生物降解
塑料包装材料降解速度慢,是一种潜在的主要环境污染物。本研究旨在从尼日利亚阿布贾的固体垃圾场中分离出塑料降解细菌。分别使用土壤螺旋钻和人工采摘从垃圾场收集土壤样品(n= 72)和塑料材料(瓶和袋)。对土壤样品进行细菌学分析,共分离出54株细菌,分布于;Proteus sp.(33.3%)、Providencia sp.(29.63%)、Pseudomonas sp.(16.67%)、Bacillus sp.(9.26%)、Micrococcus sp.(5.56%)、Escherichia coli(1.85%)、Enterobacter sp.(1.85%)、Serratia sp.(1.85%)。将分离菌接种于一系列含有营养液的摇瓶和预灭菌条(1×1 cm)塑料袋(0.05-0.0514 g)和塑料瓶(0.05-0.0529 g)中,在30℃下培养60 d,用失重法监测其生物降解情况。培养60 d后,瓶条(0.58 ~ 49.00%)对生物降解的敏感性高于塑料袋(0.78 ~ 15.40%)。结果表明,分离的细菌中约有6株属于Proteus sp.和Providencia sp.两属,被认为是最好的生物降解菌。对这些强毒分离株进行分子鉴定,鉴定为奇异变形杆菌PPB3(49.00%)、奇异变形杆菌UPMSD3(32.07%)、奇异变形杆菌HH133(20.41%)、奇异变形杆菌SSBIKEN(15.40%)、蠕虫Providencia vermicola菌株M4(14.96%)和蠕虫杆菌11(12.20%)。这些菌株可以被认为是垃圾场中普遍存在的塑料材料的潜在生物降解剂。
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来源期刊
CiteScore
1.40
自引率
0.00%
发文量
16
审稿时长
4 weeks
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