Cosgrove Lee, McGeechan Paula L, Robson Geoff D, Handley Pauline S
1.800 Stopford Building, Faculty of Life Sciences, Manchester University, Oxford Road, Manchester M13 9PT, United Kingdom.
Appl Environ Microbiol. 2007 Sep;73(18):5817-24. doi: 10.1128/AEM.01083-07. Epub 2007 Jul 27.
Soil fungal communities involved in the biodegradation of polyester polyurethane (PU) were investigated. PU coupons were buried in two sandy loam soils with different levels of organic carbon: one was acidic (pH 5.5), and the other was more neutral (pH 6.7). After 5 months of burial, the fungal communities on the surface of the PU were compared with the native soil communities using culture-based and molecular techniques. Putative PU-degrading fungi were common in both soils, as <45% of the fungal colonies cleared the colloidal PU dispersion Impranil on solid medium. Denaturing gradient gel electrophoresis showed that fungal communities on the PU were less diverse than in the soil, and only a few species in the PU communities were detectable in the soil, indicating that only a small subset of the soil fungal communities colonized the PU. Soil type influenced the composition of the PU fungal communities. Geomyces pannorum and a Phoma sp. were the dominant species recovered by culturing from the PU buried in the acidic and neutral soils, respectively. Both fungi degraded Impranil and represented >80% of cultivable colonies from each plastic. However, PU was highly susceptible to degradation in both soils, losing up to 95% of its tensile strength. Therefore, different fungi are associated with PU degradation in different soils but the physical process is independent of soil type.
对参与聚酯聚氨酯(PU)生物降解的土壤真菌群落进行了研究。将PU试片埋入两种有机碳含量不同的砂壤土中:一种是酸性土壤(pH 5.5),另一种是更接近中性的土壤(pH 6.7)。掩埋5个月后,使用基于培养的技术和分子技术,将PU表面的真菌群落与原生土壤群落进行了比较。假定的PU降解真菌在两种土壤中都很常见,因为在固体培养基上,<45%的真菌菌落能使胶体PU分散液Impranil褪色。变性梯度凝胶电泳显示,PU上的真菌群落比土壤中的真菌群落多样性更低,并且在土壤中只能检测到PU群落中的少数物种,这表明只有一小部分土壤真菌群落定殖在PU上。土壤类型影响了PU真菌群落的组成。分别从埋在酸性和中性土壤中的PU上培养得到的优势菌种是散囊菌属(Geomyces pannorum)和一种茎点霉属(Phoma sp.)真菌。这两种真菌都能降解Impranil,并且在每种塑料上可培养菌落中所占比例均>80%。然而,PU在两种土壤中都极易降解,其拉伸强度损失高达95%。因此,不同的真菌与不同土壤中PU的降解有关,但物理过程与土壤类型无关。