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Microbial Degradation of an Aliphatic Polyester with a High Melting Point Poly(Tetramethylene Succinate)

机译:高熔点脂肪族聚酯聚对苯二甲酸丁二酯的微生物降解

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摘要

The biodegradability of poly(tetramethylene succinate) (PTMS), a synthetic aliphatic polyester with a high melting point, was evaluated. The ecological study showed that the distribution of PTMS-degrading microorganisms in soil environments was quite restricted compared with the distribution of microorganisms that degrade poly((epsilon)-caprolactone) (PCL), a polyester with a low melting point. However, in soil samples in which the formation of a clear zone was observed, PTMS-degrading microorganisms constituted 0.2 to 6.0% of the total number of microorganisms, which is very close to the percentage (0.8 to 8.0%) observed for PCL-degrading microorganisms. Five strains were isolated from colonies which formed distinct clear zones on agar plates with emulsified PTMS. In liquid cultures of the isolates with ground PTMS powder, strain HT-6, an actinomycete, showed the highest PTMS degrading activity. It assimilated about 60% of the ground PTMS powder after 8 days of cultivation. When a PTMS emulsion was used, a higher degradation rate was observed and more than 90% of the PTMS was assimilated in 6 days. PTMS degradation products were analyzed by gas chromatography, and it was found that 1,4-butanediol, 4-hydroxy n-butyrate, and succinic acid accumulated during cultivation. Degradation of PTMS film by the strain occurred in two steps: fragmentation and then the formation of hemispherical holes on the surface of the film. Strain HT-6 was also able to assimilate PCL and poly((beta)-hydroxybutyrate) (PHB). The crude enzyme showed a wide range of substrate specificity, being able to degrade low-molecular-weight PTMS, PCL, PHB, and even high-molecular-weight PTMS.
机译:评价了具有高熔点的合成脂肪族聚酯聚琥珀酸丁二酯(PTMS)的生物降解性。生态学研究表明,与降解低熔点聚酯聚(ε-己内酯)(PCL)的微生物分布相比,降解PTMS的微生物在土壤环境中的分布受到很大限制。但是,在观察到形成透明区域的土壤样品中,降解PTMS的微生物占微生物总数的0.2%至6.0%,非常接近PCL降解所观察到的百分比(0.8%至8.0%)。微生物。从菌落中分离出五种菌株,这些菌落在琼脂平板上用乳化的PTMS形成明显的透明区。在带有研磨的PTMS粉末的分离株的液体培养物中,菌株HT-6(一种放线菌)显示出最高的PTMS降解活性。培养8天后,它吸收了约60%的PTMS研磨粉。使用PTMS乳液时,观察到较高的降解率,并且在6天内吸收了90%以上的PTMS。通过气相色谱分析PTMS降解产物,发现在培养过程中积累了1,4-丁二醇,4-羟基正丁酸酯和琥珀酸。 PTMS薄膜因应变而降解的过程分为两个步骤:破碎,然后在薄膜表面形成半球形孔。菌株HT-6也能够同化PCL和聚(β-羟基丁酸酯)(PHB)。粗酶显示出广泛的底物特异性,能够降解低分子量PTMS,PCL,PHB甚至是高分子量PTMS。

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