首页> 外文期刊>Applied Microbiology >Biodegradation of a Biocide (Cu-N-Cyclohexyldiazenium Dioxide) Component of a Wood Preservative by a Defined Soil Bacterial Community
【24h】

Biodegradation of a Biocide (Cu-N-Cyclohexyldiazenium Dioxide) Component of a Wood Preservative by a Defined Soil Bacterial Community

机译:明确的土壤细菌群落对木材防腐剂的杀菌剂(Cu-N-环己基二氮杂二氧化物)组分的生物降解

获取原文
       

摘要

The wood protection industry has refined their products from chrome-, copper-, and arsenate-based wood preservatives toward solely copper-based preservatives in combination with organic biocides. One of these is Cu-HDO, containing the chelation product of copper and N -cyclohexyldiazenium dioxide (HDO). In this study, the fate of isotope-labeled (~(13)C) and nonlabeled (~(12)C) Cu-HDO incorporated in wood sawdust mixed with soil was investigated. HDO concentration was monitored by high-pressure liquid chromatography. The total carbon and the δ~(13)C content of respired CO_(2), as well as of the soil-wood-sawdust mixture, were determined with an elemental analyzer-isotopic ratio mass spectrometer. The concentration of HDO decreased significantly after 105 days of incubation, and after 24 days the ~(13)CO_(2) concentration respired from soil increased steadily to a maximum after 64 days of incubation. Phospholipid fatty acid-stable isotope probing (PFA-SIP) analysis revealed that the dominant PFAs C_(19:0)d8,9, C_(18:0), C_(18:1)ω7, C_(18:2)ω6,9, C_(17:1)d7,8, C_(16:0), and C_(16:1)ω7 were highly enriched in their δ~(13)C content. Moreover, RNA-SIP identified members of the phylum Acidobacteria and the genera Phenylobacterium and Comamonas that were assimilating carbon from HDO exclusively. Cu-HDO as part of a wood preservative effectively decreased fungal wood decay and overall microbial respiration from soil. In turn, a defined bacterial community was stimulated that was able to metabolize HDO completely.
机译:木材保护行业已经将其产品从基于铬,铜和砷酸盐的木材防腐剂改进为仅与有机杀菌剂结合的铜基防腐剂。其中之一是Cu-HDO,其中含有铜和N-环己基二氧化氮(HDO)的螯合产物。在这项研究中,研究了掺入木屑与土壤混合的同位素标记(〜(13)C)和未标记(〜(12)C)Cu-HDO的去向。 HDO浓度通过高压液相色谱法监测。用元素分析仪-同位素比质谱仪测定呼吸的CO_(2)以及土壤-木屑-木屑混合物的总碳和δ〜(13)C含量。孵育105天后,HDO浓度显着降低,孵育24天后,从土壤呼吸的〜(13)CO_(2)浓度稳定增加至最大值。磷脂脂肪酸稳定同位素探测(PFA-SIP)分析显示,主要PFA C_(19:0)d8,9,C_(18:0),C_(18:1)ω7,C_(18:2)ω6 ,9,C_(17:1)d7,8,C_(16:0)和C_(16:1)ω7的δ〜(13)C含量很高。此外,RNA-SIP鉴定了酸性细菌门以及苯细菌和Comamonas属的成员,这些成员专门从HDO吸收碳。 Cu-HDO作为木材防腐剂的一部分可有效减少真菌木材腐烂和土壤中的整体微生物呼吸。反过来,刺激了能够完全代谢HDO的特定细菌群落。

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