Cacciari I, Quatrini P, Zirletta G, Mincione E, Vinciguerra V, Lupattelli P, Giovannozzi Sermanni G
Dipartimento di Agrobiologia e Agrochimica, Università degli Studi della Tuscia, Viterbo, Italy.
Appl Environ Microbiol. 1993 Nov;59(11):3695-700. doi: 10.1128/aem.59.11.3695-3700.1993.
From a selective enrichment culture prepared with different soil samples on starch-containing polyethylene we isolated four microaerophilic microbial communities able to grow on this kind of plastic with no additional carbon source. One consortium, designated community 3S, was tested with pure isotactic polypropylene to determine whether the consortium was able to degrade this polymer. Polypropylene strips were incubated for 5 months in a mineral medium containing sodium lactate and glucose in screw-cap bottles. Dichloromethane crude extracts of the cultures revealed that the weight of extracted materials increased with incubation time, while the polypropylene sample weight decreased. The extracted materials were characterized by performing chromatographic and spectral analyses (thin-layer chromatography, liquid chromatography, gas chromatography-mass spectrometry, infrared spectrometry, nuclear magnetic resonance). Three main fractions were detected and analyzed; a mixture of hydrocarbons at different degrees of functionalization was found together with a mixture of aromatic esters, as the plasticizers usually added to polyolefinic structures.
从用不同土壤样品在含淀粉聚乙烯上制备的选择性富集培养物中,我们分离出四个能够在这种塑料上生长且无需额外碳源的微需氧微生物群落。其中一个菌群,命名为群落3S,用纯等规聚丙烯进行测试,以确定该菌群是否能够降解这种聚合物。聚丙烯条在含有乳酸钠和葡萄糖的矿物培养基中,于螺帽瓶中孵育5个月。培养物的二氯甲烷粗提物显示,提取物的重量随孵育时间增加,而聚丙烯样品重量减少。通过进行色谱和光谱分析(薄层色谱、液相色谱、气相色谱 - 质谱、红外光谱、核磁共振)对提取物进行表征。检测并分析了三个主要部分;发现了不同官能化程度的烃类混合物以及芳香酯混合物,后者是通常添加到聚烯烃结构中的增塑剂。