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Free cyanide and thiocyanate biodegradation by Pseudomonas aeruginosa STK 03 capable of heterotrophic nitrification under alkaline conditions

机译:铜绿假单胞菌STK 03在碱性条件下能够进行异养硝化作用的游离氰化物和硫氰酸盐生物降解

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摘要

An alkali-tolerant bacterium, Pseudomonas aeruginosa STK 03 (accession number ), isolated from an oil spill site, was evaluated for the biodegradation of free cyanide and thiocyanate under alkaline conditions. The organism had a free cyanide degradation efficiency of 80 and 32 % from an initial concentration of 250 and 450 mg CN/L, respectively. Additionally, the organism was able to degrade thiocyanate, achieving a degradation efficiency of 78 and 98 % from non- and free cyanide spiked cultures, respectively. The organism was capable of heterotrophic nitrification but was unable to denitrify aerobically. The organism was unable to degrade free cyanide in the absence of a carbon source, but it was able to degrade thiocyanate heterotrophically, achieving a degradation efficiency of 79 % from an initial concentration of 250 mg SCN/L. Further increases in thiocyanate degradation efficiency were only observed when the cultures were spiked with free cyanide (50 mg CN/L), achieving a degradation efficiency of 98 % from an initial concentration of 250 mg SCN/L. This is the first study to report free cyanide and thiocyanate degradation by Pseudomonas aeruginosa. The higher free cyanide and thiocyanate tolerance of the isolate STK 03, which surpasses the stipulated tolerance threshold of 200 mg CN/L for most organisms, could be valuable in microbial consortia for the degradation of cyanides in an industrial setting.
机译:从漏油部位分离出的耐碱细菌铜绿假单胞菌STK 03(登录号)被评估为在碱性条件下对游离氰化物和硫氰酸盐的生物降解作用。该生物从初始浓度250和450 mg CN - / L分别具有80%和32%的游离氰化物降解效率。此外,该生物能够降解硫氰酸盐,分别从非氰化物和游离氰化物加标培养物中获得78%和98%的降解效率。该生物体能够进行异养硝化,但不能进行有氧反硝化。该生物体在没有碳源的情况下无法降解游离氰化物,但能够异养降解硫氰酸盐,从250 mg SCN - / L的初始浓度即可达到79%的降解效率。仅在向培养物中掺入游离氰化物(50 mg CN - / L)时,才能观察到硫氰酸盐降解效率的进一步提高,从250mg SCN / L。这是第一项报道铜绿假单胞菌降解游离氰化物和硫氰酸盐的研究。分离株STK 03的较高的游离氰化物和硫氰酸盐耐受性高于大多数有机体规定的200 mg CN - / L的耐受性阈值,对于微生物群落中氰化物的降解具有重要意义。工业环境。

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