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Biosensor for Direct Determination of Fenitrothion and EPN Using Recombinant Pseudomonas putida JS444 with Surface Expressed Organophosphorus Hydrolase. 1. Modified Clark Oxygen Electrode

机译:使用表面表达有机磷水解酶的恶臭假单胞菌JS444直接测定杀nitro硫磷和EPN的生物传感器。 1.改性克拉克氧电极

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摘要

This paper reports a first microbial biosensor for rapid and cost-effective determination of organophosphorus pesticides fenitrothion and EPN. The biosensor consisted of recombinant PNP-degrading/oxidizing bacteria Pseudomonas putida JS444 anchoring and displaying organophosphorus hydrolase (OPH) on its cell surface as biological sensing element and a dissolved oxygen electrode as the transducer. Surface-expressed OPH catalyzed the hydrolysis of fenitrothion and EPN to release 3-methyl-4-nitrophenol and p-nitrophenol, respectively, which were oxidized by the enzymatic machinery of Pseudomonas putida JS444 to carbon dioxide while consuming oxygen, which was measured and correlated to the concentration of organophosphates. Under the optimum operating conditions, the biosensor was able to measure as low as 277 ppb of fenitrothion and 1.6 ppm of EPN without interference from phenolic compounds and other commonly used pesticides such as carbamate pesticides, triazine herbicides and organophosphate pesticides without nitrophenyl substituent. The applicability of the biosensor to lake water was also demonstrated.
机译:本文报道了首个用于快速,经济高效地测定有机磷农药杀虫硫磷和EPN的微生物传感器。该生物传感器由重组PNP降解/氧化细菌恶臭假单胞菌JS444组成,在其细胞表面锚定并显示有机磷水解酶(OPH)作为生物传感元件,而溶解氧电极作为传感器。表面表达的OPH分别催化杀nitro硫磷和EPN的水解,分别释放3-甲基-4-硝基苯酚和对硝基苯酚,它们在消耗氧气的情况下被恶臭假单胞菌JS444的酶催化氧化为二氧化碳,并进行了测量和关联到有机磷酸盐的浓度。在最佳操作条件下,该生物传感器能够测定低至277 ppb的杀fe硫磷和1.6 ppm的EPN,而不受酚类化合物和其他常用农药(如氨基甲酸酯农药,三嗪除草剂和无硝基苯基取代基的有机磷农药)的干扰。还证明了该生物传感器对湖水的适用性。

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