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Degradation of a Sodium Acrylate Oligomer by an Arthrobacter sp

机译:关节杆菌对丙烯酸钠低聚物的降解

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Arthrobacter sp. strain NO-18 was first isolated from soil as a bacterium which could degrade the sodium acrylate oligomer and utilize it as the sole source of carbon. When 0.2% (wt/wt) oligomer was added to the culture medium, the acrylate oligomer was found to be degraded by 70 to 80% in 2 weeks, using gel permeation chromatography. To determine the maximum molecular weight for biodegradation, the degradation test was done with the hexamer, heptamer, and octamer, which were separated from the oligomer mixture by fractional gel permeation chromatography. The hexamer and heptamer were consumed to the extents of 58 and 36%, respectively, in 2 weeks, but the octamer was not degraded. Oligomers with three different terminal groups were synthesized to examine the effect of the different terminal groups on biodegradation, but few differences were found. Arthrobacter sp. NO-18 assimilated acrylic acid, propionic acid, glutaric acid, 2-methylglutaric acid, and 1,3,5-pentanetricarboxylic acid. Degradation of the acrylic unit structure by this strain is discussed.
机译:关节杆菌首先从土壤中分离出NO-18菌株作为细菌,该细菌可以降解丙烯酸钠低聚物并将其用作唯一的碳源。当向培养基中添加0.2%(wt / wt)低聚物时,使用凝胶渗透色谱法发现丙烯酸酯低聚物在2周内降解了70%至80%。为了确定生物降解的最大分子量,用六聚体,七聚体和八聚体进行了降解测试,通过分级凝胶渗透色谱法将它们从低聚物混合物中分离出来。在2周内,六聚体和七聚体的消耗量分别为58%和36%,但是八聚体并未降解。合成了具有三个不同末端基团的低聚物,以检查不同末端基团对生物降解的影响,但是发现的差异很小。关节杆菌NO-18吸收了丙烯酸,丙酸,戊二酸,2-甲基戊二酸和1,3,5-戊三羧酸。讨论了该应变对丙烯酸单元结构的降解。

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