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Degradation of biodegradable plastic mulch films in soil environment by phylloplane fungi isolated from gramineous plants

机译:从禾本科植物中分离出的叶面真菌降解土壤环境中可生物降解的塑料覆盖膜

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To improve the biodegradation of biodegradable plastic (BP) mulch films, 1227 fungal strains were isolated from plant surface (phylloplane) and evaluated for BP-degrading ability. Among them, B47-9 a strain isolated from the leaf surface of barley showed the strongest ability to degrade poly-(butylene succinate-co-butylene adipate) (PBSA) and poly-(butylene succinate) (PBS) films. The strain grew on the surface of soil-mounted BP films, produced breaks along the direction of hyphal growth indicated that it secreted a BP-degrading enzyme, and has directly contributing to accelerating the degradation of film. Treatment with the culture filtrate decomposed 91.2?wt%, 23.7?wt%, and 14.6?wt% of PBSA, PBS, and commercially available BP polymer blended mulch film, respectively, on unsterlized soil within 6?days. The PCR-DGGE analysis of the transition of soil microbial community during film degradation revealed that the process was accompanied with drastic changes in the population of soil fungi and Acantamoeba spp., as well as the growth of inoculated strain B47-9. It has a potential for application in the development of an effective method for accelerating degradation of used plastics under actual field conditions.
机译:为了改善可生物降解塑料(BP)覆盖膜的生物降解性,从植物表面(叶平面)分离了1227株真菌菌株,并评估了其对BP降解的能力。其中,从大麦叶表面分离出的B47-9菌株显示出最强的降解聚丁二酸丁二酯-己二酸丁二酸共丁酯(PBSA)和聚丁二酸丁二酯(PBS)膜的能力。该菌株生长在土壤固定的BP膜表面,沿菌丝生长方向产生断裂,表明该菌株分泌了BP降解酶,并直接促进了膜的降解。用培养物滤液处理在6天之内分别分解了91.2wt%,23.7wt%和14.6wt%的PBSA,PBS和可商购的BP聚合物共混覆盖膜。对膜降解过程中土壤微生物群落转变的PCR-DGGE分析表明,该过程伴随着土壤真菌和棘孢菌属种群的急剧变化,以及接种菌株B47-9的生长。它有可能用于开发在实际田间条件下加速废旧塑料降解的有效方法。

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