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[C14C]聚苯乙烯和1,3 - 二苯基丁烷的微生物降解

Microbial degradation of [C14C]polystyrene and 1,3-diphenylbutane.

作者信息

Sielicki M, Focht D D, Martin J P

出版信息

Can J Microbiol. 1978 Jul;24(7):798-803. doi: 10.1139/m78-134.

Abstract

Microbial degradation of [beta-14C]polystyrene and 1,3-diphenylbutane, a compound structurally representing the smallest repeating unit of styrene (dimer), was investigated in soil and liquid enrichment cultures. Degradation rates in soil, as determined by 14CO2 evolution from applied [14C]polystyrene, varied from 1.5 to 3.0% for a 4-month period. Although relatively low, these percentages were 15 to 30 times greater than values previously reported. Enrichment cultures, containing 1,3-diphenylbutane as the only carbon souce, were used to determine the mechanisms of microbial oxidation of the polymer chain ends. Metabolism of 1,3-diphenylbutane appeared to involve the attack by a monooxygenease to form 2-phenyl-4-hydroxyphenylbutane followed by a further oxidation and subsequent fission of the benzene ring to yield 4-phenylvaleric acid and an unidentified 5-carbon fragment via the classic meta-fission pathway. Phenylacetic acid was probably formed from 4-phenylvaleric acid by subsequent beta-oxidation of the side chain, methyl-oxidation and decarboxylation. An initial examination of the population of microorganisms in the diphenylbutane enrichment cultures indicated that these oxidative reactions are carried out by common soil microorganism of the genera Bacillus, Pseudomonas, Micrococcus, and Nocardia.

摘要

在土壤和液体富集培养物中研究了[β-14C]聚苯乙烯和1,3-二苯基丁烷(一种在结构上代表苯乙烯最小重复单元的化合物,即二聚体)的微生物降解情况。通过施加的[14C]聚苯乙烯释放14CO2来测定,土壤中的降解率在4个月内为1.5%至3.0%。尽管相对较低,但这些百分比比先前报道的值高15至30倍。以1,3-二苯基丁烷作为唯一碳源的富集培养物用于确定聚合物链端微生物氧化的机制。1,3-二苯基丁烷的代谢似乎涉及单加氧酶的攻击,形成2-苯基-4-羟基苯基丁烷,随后进一步氧化,接着苯环发生裂变,通过经典的间位裂变途径产生4-苯基戊酸和一个未鉴定的5碳片段。苯乙酸可能是由4-苯基戊酸通过侧链的后续β-氧化、甲基氧化和脱羧作用形成的。对二苯基丁烷富集培养物中微生物种群的初步检查表明,这些氧化反应是由芽孢杆菌属、假单胞菌属、微球菌属和诺卡氏菌属的常见土壤微生物进行的。

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