首页> 外文期刊>Applied and Environmental Microbiology >Efficient biodegradation of high-molecular-weight polyethylene glycols by pure cultures of Pseudomonas stutzeri.
【24h】

Efficient biodegradation of high-molecular-weight polyethylene glycols by pure cultures of Pseudomonas stutzeri.

机译:斯图氏假单胞菌纯培养物对高分子量聚乙二醇的有效生物降解。

获取原文
获取外文期刊封面目录资料

摘要

Biodegradation of polyethylene glycols (PEGs) of up to 13,000 to 14,000 molecular weight has been shown to be performed by a river water bacterial isolate (strain JA1001) identified as Pseudomonas stutzeri. A pure culture of strain JA1001 grew on PEG 1000 or PEG 10000 at 0.2% (wt/vol) as a sole source of carbon and energy with a doubling time of 135 or 150 min, respectively. Cultures metabolized 2 g of polymer per liter in less than 24 h and 10 g/liter in less than 72 h. The limit of 13,500 molecular weight in the size of the PEG sustaining growth and the presence of a PEG-oxidative activity in the periplasmic space indicated that PEGs cross the outer membrane and are subsequently metabolized in the periplasm. PEG oxidation was found to be catalyzed by PEG dehydrogenase, an enzyme that has been shown to be a single polypeptide. Characterization of PEG dehydrogenase revealed glyoxylic acid as the product of the PEG-oxidative cleavage. Glyoxylate supported growth by entering the cell and introducing its carbons in the general metabolism via the dicarboxylic acid cycle, as indicated by the ability of strain JA1001 to grow on this compound and the presence of malate synthase, the first enzyme in the pathway, in extracts of PEG-grown cells.
机译:分子量高达13,000至14,000的聚乙二醇(PEG)的生物降解已显示为被鉴定为斯氏假单胞菌(Pseudomonas stutzeri)的河水细菌分离株(菌株JA1001)。 JA1001菌株的纯培养物以0.2%(wt / vol)在PEG 1000或PEG 10000上生长,作为碳和能量的唯一来源,其倍增时间分别为135或150分钟。培养物在不到24小时内每升代谢2克聚合物,在不到72小时内每升代谢10克/升。维持生长的PEG大小限制为13,500分子量,并且在周质空间中存在PEG氧化活性,这表明PEG穿过外膜并随后在周质中代谢。发现PEG氧化是由PEG脱氢酶催化的,PEG脱氢酶已显示为单一多肽。 PEG脱氢酶的表征显示乙二酸是PEG氧化裂解的产物。乙醛酸通过进入细胞并通过二羧酸循环在一般代谢中引入其碳来支持生长,如菌株JA1001在该化合物上生长的能力以及苹果酸合酶(该途径中的第一种酶)的存在所表明的那样。 PEG生长的细胞。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号