BioTeam/ICPEES-ECPM, UMR CNRS 7515, Université de Strasbourg, 25 rue Becquerel, 67087, Strasbourg Cedex 2, France.
Soprema, 14 rue de Saint-Nazaire, 67025, Strasbourg Cedex 1, France.
Microb Biotechnol. 2019 May;12(3):544-555. doi: 10.1111/1751-7915.13346. Epub 2018 Dec 27.
As a highly resistant polymer family, polyurethanes (PU) are responsible for increasing environmental issues. Then, PU biodegradation is a challenging way to develop sustainable waste management processes based on biological recycling. Since the metabolic diversity of fungi is a major asset for polymer degradation, nearly thirty strains were isolated from sampling on six different PU wastes-containing environments. A screening of the fungi on four thermoplastic PU (TPU) with different macromolecular architectures led to the selection of three strains able to use two polyester PU as sole carbon source: Alternaria sp., Penicillium section Lanata-Divaricata and Aspergillus section flavi. Weight loss, FT-IR, Scanning Electron Microscopy and Size Exclusion Chromatography analyses revealed that these three fungi degrade slightly and similarly a fatty acid dimer-based TPU while variability of degradation was noticed on a polycaprolactone-based TPU. On this last TPU, robust analysis of the degraded polymers showed that the Penicillium strain was the best degrading microorganism. Membrane enzymes seemed to be involved in this degradation. It is the first time that a strain of Penicillium of the section Lanata-Divaricata displaying PU biodegradation ability is isolated. These newly discovered fungi are promising for the development of polyester PU waste management process.
作为一类高度稳定的聚合物家族,聚氨酯(PU)是造成环境问题的元凶之一。因此,寻求一种可持续的废物管理方法,即通过生物回收实现 PU 的生物降解,成为当务之急。由于真菌的代谢多样性是其进行聚合物降解的主要优势,我们从六个不同的含 PU 废物环境中采集样本,并从中分离出近三十株真菌。通过对四种具有不同大分子结构的热塑性聚氨酯(TPU)进行真菌筛选,我们选择了三种能够以两种聚酯 PU 为唯一碳源的菌株:交替单胞菌属、毛壳菌属和黄曲霉属。失重、FT-IR、扫描电子显微镜和尺寸排阻色谱分析表明,这三种真菌能够缓慢且相似地降解基于脂肪酸二聚体的 TPU,而对基于聚己内酯的 TPU 的降解则存在差异。在最后一种 TPU 上,对降解聚合物进行的强有力分析表明,青霉属菌株是最具降解能力的微生物。膜酶似乎参与了这种降解。这是首次从毛壳菌属中分离出具有 PU 生物降解能力的菌株。这些新发现的真菌有望用于开发聚酯 PU 废物管理工艺。