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Assimilation of cyanide and cyano-derivatives by Pseudomonas pseudoalcaligenes CECT5344: from omic approaches to biotechnological applications

机译:假单胞菌假产碱假单胞菌CECT5344对氰化物和氰基衍生物的同化作用:从组学方法到生物技术应用

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摘要

Mining, jewellery and metal-processing industries use cyanide for extracting gold and other valuable metals, generating large amounts of highly toxic wastewater. Biological treatments may be a clean alternative under the environmental point of view to the conventional physical or chemical processes used to remove cyanide and related compounds from these industrial effluents. Pseudomonas pseudoalcaligenes CECT5344 can grow under alkaline conditions using cyanide, cyanate or different nitriles as the sole nitrogen source, and is able to remove up to 12 mM total cyanide from a jewellery industry wastewater that contains cyanide free and complexed to metals. Complete genome sequencing of this bacterium has allowed the application of transcriptomic and proteomic techniques, providing a holistic view of the cyanide biodegradation process. The complex response to cyanide by the cyanotrophic bacterium P. pseudoalcaligenes CECT5344 and the potential biotechnological applications of this model organism in the bioremediation of cyanide-containing industrial residues are reviewed.
机译:采矿,珠宝和金属加工行业使用氰化物提取金和其他有价金属,产生大量剧毒废水。从环境的角度来看,对于从这些工业废水中除去氰化物和相关化合物的常规物理或化学过程而言,生物处理可能是一种清洁的替代方法。假单胞假单胞菌CECT5344可以在碱性条件下使用氰化物,氰酸盐或不同的腈作为唯一氮源生长,并且能够从珠宝业废水中去除多达12 mM的总氰化物,该废水中不含氰化物且与金属络合。该细菌的完整基因组测序已允许使用转录组学和蛋白质组学技术,提供了氰化物生物降解过程的整体视图。审查了由营养营养细菌伪拟杯假单胞菌CECT5344对氰化物的复杂反应以及该模型生物在对含氰化物的工业残留物进行生物修复中的潜在生物技术应用。

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