Screening of cultivation media for ldpe biodegradation by Penicillium verrucosum CNM-FP-02

O. Postolachi, I. Rastimesina, V. Josan, V. Mamaliga, Alina Cotoman
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Abstract

The paper’s aim was to select the optimal mineral medium for LDPE biodegradation by the strain Penicillium verrucosum CNM-FP-02. It was selected 5 mineral salt media (MSM), which differed in salt content and N/P ratio. After 40 days of submerged cultivation, the following parameters were determined: catalase activity and pH of cultural media, biomass accumulation, rate of LDPE degradation, optical microscopy and the tensile testing of polyethylene. It was observed that catalase activity on all media, except MSM 4, was higher in the presence of LDPE. The addition of polyethylene to the growth media stimulated the fungal biomass accumulation by 19.3-93.1% (4 media out of 5 tested). The percentage of degradation of LDPE films was different, depending on the culture medium, from 0.41% to 0.92%. The most active LDPE films were degraded on medium MSM 2. Visualization of plastic strips under an optical microscope revealed the immobilization of the microorganism and the damage on the polyethylene surface. The tensile test showed increased elasticity of the plastic in the variants treated with fungal strain. In conclusion, in order to stimulate the biodegradation of LDPE by the strain P. verrucosum CNM-FP-02, the medium MSM 2 (N/P ratio 1:1) was selected.
疣状青霉CNM-FP-02降解ldpe培养基的筛选
本文的目的是选择疣状青霉菌CNM-FP-02生物降解LDPE的最佳矿物培养基。选取了5种不同含盐量和氮磷比的无机盐培养基。潜水培养40 d后,测定培养基过氧化氢酶活性和pH、生物量积累、LDPE降解率、光学显微镜和聚乙烯拉伸性能。除msm4外,所有培养基上过氧化氢酶活性在LDPE存在下均较高。在培养基中添加聚乙烯对真菌生物量的促进作用为19.3 ~ 93.1%(5个培养基中有4个培养基)。LDPE膜的降解率因培养基的不同而不同,从0.41%到0.92%不等。活性LDPE膜在msm2介质上降解。在光学显微镜下,塑料条的可视化显示了微生物的固定和聚乙烯表面的损伤。拉伸试验表明,真菌应变处理的塑性变异体的弹性增加。综上所述,为了促进疣状假单胞菌CNM-FP-02对LDPE的生物降解,选择培养基MSM 2 (N/P比为1:1)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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