Literature DB >> 24056469

Fungal communities associated with the biodegradation of polyester polyurethane buried under compost at different temperatures.

Urooj Zafar1, Ashley Houlden, Geoffrey D Robson.   

Abstract

Plastics play an essential role in the modern world due to their low cost and durability. However, accumulation of plastic waste in the environment causes wide-scale pollution with long-lasting effects, making plastic waste management expensive and problematic. Polyurethanes (PUs) are heteropolymers that made up ca. 7% of the total plastic production in Europe in 2011. Polyester PUs in particular have been extensively reported as susceptible to microbial biodegradation in the environment, particularly by fungi. In this study, we investigated the impact of composting on PUs, as composting is a microbially rich process that is increasingly being used for the processing of green waste and food waste as an economically viable alternative to landfill disposal. PU coupons were incubated for 12 weeks in fresh compost at 25°C, 45°C, and 50°C to emulate the thermophilic and maturation stages of the composting process. Incubation at all temperatures caused significant physical deterioration of the polyester PU coupons and was associated with extensive fungal colonization. Terminal restriction fragment length polymorphism (TRFLP) analysis and pyrosequencing of the fungal communities on the PU surface and in the surrounding compost revealed that the population on the surface of PU was different from the surrounding compost community, suggesting enrichment and selection. The most dominant fungi identified from the surfaces of PU coupons by pyrosequencing was Fusarium solani at 25°C, while at both 45°C and 50°C, Candida ethanolica was the dominant species. The results of this preliminary study suggest that the composting process has the potential to biodegrade PU waste if optimized further in the future.

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Year:  2013        PMID: 24056469      PMCID: PMC3837764          DOI: 10.1128/AEM.02536-13

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  30 in total

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Review 2.  Using terminal restriction fragment length polymorphism (T-RFLP) to identify mycorrhizal fungi: a methods review.

Authors:  I A Dickie; R G FitzJohn
Journal:  Mycorrhiza       Date:  2007-04-12       Impact factor: 3.387

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Journal:  Mycorrhiza       Date:  2007-03-06       Impact factor: 3.387

4.  Purification and Properties of a Polyester Polyurethane-Degrading Enzyme from Comamonas acidovorans TB-35.

Authors:  Y Akutsu; T Nakajima-Kambe; N Nomura; T Nakahara
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5.  Prokaryotic successions and diversity in composts as revealed by 454-pyrosequencing.

Authors:  Vidya de Gannes; Gaius Eudoxie; William J Hickey
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Review 6.  Microbial degradation of polyurethane, polyester polyurethanes and polyether polyurethanes.

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8.  Effect of biostimulation and bioaugmentation on degradation of polyurethane buried in soil.

Authors:  L Cosgrove; P L McGeechan; P S Handley; G D Robson
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9.  Candida rugosa lipase-catalyzed polyurethane degradation in aqueous medium.

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2.  Comparative in situ biodegradation studies of polyhydroxybutyrate film composites.

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3.  Starch Nanocomposite Films: Migration Studies of Nanoparticles to Food Simulants and Bio-Disintegration in Soil.

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5.  Biodegradative Activities of Selected Environmental Fungi on a Polyester Polyurethane Varnish and Polyether Polyurethane Foams.

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Journal:  Appl Environ Microbiol       Date:  2016-08-15       Impact factor: 4.792

6.  UV-Surface Treatment of Fungal Resistant Polyether Polyurethane Film-Induced Growth of Entomopathogenic Fungi.

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7.  Exploring the long-term effect of plastic on compost microbiome.

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Review 8.  Plastics: Environmental and Biotechnological Perspectives on Microbial Degradation.

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