Plastic degrading fungi Trichoderma viride and Aspergillus nomius isolated from local landfill soil in Medan

被引:61
作者
Munir, E. [1 ]
Harefa, R. S. M. [1 ]
Priyani, N. [1 ]
Suryanto, D. [1 ]
机构
[1] Univ Sumatra Utara, Fac Math & Nat Sci, Dept Biol, Jl Bioteknol 1, Medan 20155, Indonesia
来源
FRIENDLY CITY 4 FROM RESEARCH TO IMPLEMENTATION FOR BETTER SUSTAINABILITY | 2018年 / 126卷
关键词
Aspergillus nomius; degradation of plastic; low density polyethylene; plastic degrading fungi; Trichoderma viride; BIODEGRADATION; POLYETHYLENE; POLYESTERS; WASTE;
D O I
10.1088/1755-1315/126/1/012145
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Plastic is a naturally recalcitrant polymer, once it enters the environment, it will remain there for many years. Accumulation of plastic as wastes in the environment poses a serious problem and causes an ecological threat. Alternative strategies to reduce accumulation of plastic wastes have been initiated and implemented from a different aspect including from microbiological view point. The study to obtain potential fungi in degrading plastic molecule has been initiated in our laboratory. Low density polyethylene (LDPE) plastic was used as a tested material. Candidate fungi were isolated from local landfill soil. The fungi were cultured in mineral salt medium broth containing LDPE powder. Two of nine isolates showed best growth response in broth media containing LDPE. These isolates (RH03 and RH06) were used in degradation test. Results showed that isolate RH03 and RH06 reduced the weight of LDPE film by 5.13% and 6.63%, respectively after 45 days of cultivation. The tensile strength of treated film even reduced significantly by 58% and 40% of each isolate. Analyses of electron micrograph exhibited grove ands rough were formed on the surface of LDPE film. These were not found in the untreated film. Furthermore, molecular analysis through polymerase chain reaction and DNA sequencing indicated that RH03 is Trichoderma viride and RH06 is Aspergillus nomius with 97% and 96% similarities, respectively.
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页数:7
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