首页> 外文期刊>Journal of applied microbiology >Microbial degradation of the biocide polyhexamethylene biguanide: isolation and characterization of enrichment consortia and determination of degradation by measurement of stable isotope incorporation into DNA
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Microbial degradation of the biocide polyhexamethylene biguanide: isolation and characterization of enrichment consortia and determination of degradation by measurement of stable isotope incorporation into DNA

机译:杀微生物剂聚六亚甲基双胍的微生物降解:富集财团的分离和表征,以及通过将稳定同位素掺入DNA中的测定来确定降解

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摘要

To isolate micro-organisms capable of utilizing polyhexamethylene biguanide (PHMB) as a sole source of nitrogen, and to demonstrate biodegradation of the biocide. Two consortia of bacteria were successfully enriched at the expense of PHMB, using sand from PHMB-treated swimming pools as inoculum. Both consortia were shown to contain bacteria belonging to the genera Sphingomonas, Azospirillum and Mesorhizobium. It was shown that the presence of both Sphingomonas and Azospirillum spp. was required for extensive growth of the consortia. In addition, the Sphingomonads were the only isolates capable of growth in axenic cultures dosed with PHMB. Using a stable isotope (p#eN)-labelled PHMB, metabolism of the biocide by both consortia was demonstrated. By comparing the level of p#eN atom incorporation into bacterial DNA after growth on either p#eN-PHMB or p#eN-labelled NHCl, it was possible to estimate the percentage of PHMB biodegradation. The microbial metabolism of nitrogen from the biguanide moiety of PHMB has been demonstrated. It was revealed that Sphingomonas and Azospirillum spp. are the principal organisms responsible for growth at the expense of PHMB. This is the first study to demonstrate the microbial metabolism of PHMB.
机译:分离能够利用聚六亚甲基双胍(PHMB)作为唯一氮源的微生物,并证明该杀生物剂的生物降解。使用PHMB处理过的游泳池中的沙子作为接种物,以PHMB为代价成功富集了两个细菌群落。两个财团均显示含有鞘氨醇单胞菌属,固氮螺菌属和中生根瘤菌属的细菌。结果表明鞘氨醇单胞菌和固氮螺菌都存在。是财团广泛发展所必需的。此外,鞘氨醇单胞菌是唯一能够在接种PHMB的未成熟培养物中生长的分离株。使用稳定的同位素(p#eN)标记的PHMB,证明了两个联盟对杀生物剂的代谢。通过比较在p#eN-PHMB或p#eN标记的NHCl上生长后p#eN原子掺入细菌DNA的水平,可以估算PHMB生物降解的百分比。已经证明了来自PHMB的双胍部分的氮的微生物代谢。据揭示鞘氨醇单胞菌和固氮螺菌属。是负责生长的主要生物,但会损害PHMB。这是第一个证明PHMB微生物代谢的研究。

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