Study on sensitivity of esterase from Chrysemys and Tupaiabelangeri to some organophosphorus and carbamate pesticide
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(1. School of Food and Biological Engineering, Xihua University, Chengdu, Sichuan 610039, China; 2. Yibin Xihua University Research Institute, Yibin, Sichuan 644004, China; 3. Key Laboratory of Food Non Thermal Processing, Yibin, Sichuan 644004, China; 4. Engineering Technology Research Center of Food Non Thermal Processing, Yibin, Sichuan 644004, China)

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    Abstract:

    The esterase activity of Chrysemyswas determined by Ellman method, and the indole acetate was used as substrate to determine the esterase activity of Tupaiabelangeri. The optimum reaction conditions were determined by orthogonal array design.and the inhibition effects of several specific enzyme inhibitors were compared; The enzyme inhibition method was used to investigated the sensitivity of esterase form Chrysemyse and Tupaiabelangeri to organophosphorus and carbamate pesticides. The optimum conditions of esterase activity determination of Chrysemys were: incubation temperature 35 ℃, incubation time 15 min, buffer pH 7.5; The optimum conditions of esterase activity determination of Tupaiabelangeri were: incubation temperature 25 ℃, incubation time 15 min, buffer pH 8.0.The most sensitive to Chrysemysesterase was donepezil hydrochloride, the most sensitive to Tupaiabelangeri esterasewas bis (4-nitrophenyl) phosphate. The detection limits of esterase form Chrysemys and Tupaiabelangeri on trichlorfon, phoxim, dichlorvos, mevinphos, phosphamidon, metolcarb, carbofuran, methomyl, aldicarb and carbaryl were all lower than the maximum residue limits stipulated by national standards. The extracts of esterase from Chrysemys and Tupaiabelangeriwere showed high sensitivity to pesticide, which could be used as a new enzyme source in the enzyme inhibition method for rapid detection organophosphorus and carbamate pesticide.

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宋燕飞,陈祥贵,向俊丞,等.锦龟酯酶与树鼩酯酶对部分有机磷和氨基甲酸酯类农药的敏感性研究[J].食品与机械英文版,2019,(11):58-63.

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History
  • Received:August 13,2019
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  • Online: November 24,2022
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