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首页> 外文期刊>Antonie van Leeuwenhoek: Journal of Microbiology and serology >The current and future applications of microorganism in the bioremediation of cyanide contamination.
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The current and future applications of microorganism in the bioremediation of cyanide contamination.

机译:微生物在氰化物污染生物修复中的当前和未来应用。

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摘要

Inorganic cyanide and nitrile compounds are distributed widely in the environment, chiefly as a result of anthropogenic activity but also through cyanide synthesis by a range of organisms including higher plants, fungi and bacteria. The major source of cyanide in soil and water is through the discharge of effluents containing a variety of inorganic cyanide and nitriles. Here the fate of cyanide compounds in soil and water is reviewed, identifying those factors that affect their persistence and which determine whether they are amenable to biological degradation. The exploitation of cyanides by a variety of taxa, as a mechanism to avoid predation or to inhibit competitors has led to the evolution in many organisms of enzymes that catalyse degradation of a range of cyanide compounds. Microorganisms expressing pathways involved in cyanide degradation are briefly reviewed and the current applications of bacteria and fungi in the biodegradation of cyanide contamination in the field are discussed. Finally, recent advances that offer an insight into the potential of microbial systems for the bioremediation of cyanide compounds under a range of environmental conditions are identified, and the future potential of these technologies for the treatment of cyanide pollution is discussed.
机译:无机氰化物和腈化合物广泛分布在环境中,这主要是由于人为活动引起的,而且还可以通过包括高等植物,真菌和细菌在内的多种生物体的氰化物合成来实现。土壤和水中氰化物的主要来源是通过排放含有各种无机氰化物和腈的废水。在这里,对土壤和水中氰化物的命运进行了综述,确定了影响其持久性并决定它们是否适合生物降解的因素。作为避免掠食或抑制竞争者的一种机制,各种生物分类单元对氰化物的利用已导致许多生物体进化出催化一系列氰化物降解的酶。简要介绍了涉及氰化物降解的微生物表达途径,并讨论了细菌和真菌在氰化物污染生物降解领域中的当前应用。最后,确定了可洞察微生物系统在各种环境条件下生物修复氰化物的潜力的最新进展,并讨论了这些技术在处理氰化物污染方面的未来潜力。

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