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谭渝云, 张甬元, 孙美娟, 张进军. 有机磷农药在水生态系中生物净化机理研究 4. Pseudomonas sp. CTP-01 的对硫磷水解酶诱导合成性质[J]. 水生生物学报, 1982, 6(4): 521-526.
引用本文: 谭渝云, 张甬元, 孙美娟, 张进军. 有机磷农药在水生态系中生物净化机理研究 4. Pseudomonas sp. CTP-01 的对硫磷水解酶诱导合成性质[J]. 水生生物学报, 1982, 6(4): 521-526.
Tan Yuyun, Zhang Yongyuan, Sun Meijuan, Zhang Jinjun. MECHANISM OF BIODEGRADATION OF ORGANOPHOSPHATE PESTICIDES IN AQUATIC ECOSYSTEM 4. THE INDUCIBLE SYNTHESIS CHARACTER OF PARATHION HYDROLASE IN PSEUDOMONAS SP. CTP-01[J]. ACTA HYDROBIOLOGICA SINICA, 1982, 6(4): 521-526.
Citation: Tan Yuyun, Zhang Yongyuan, Sun Meijuan, Zhang Jinjun. MECHANISM OF BIODEGRADATION OF ORGANOPHOSPHATE PESTICIDES IN AQUATIC ECOSYSTEM 4. THE INDUCIBLE SYNTHESIS CHARACTER OF PARATHION HYDROLASE IN PSEUDOMONAS SP. CTP-01[J]. ACTA HYDROBIOLOGICA SINICA, 1982, 6(4): 521-526.

有机磷农药在水生态系中生物净化机理研究 4. Pseudomonas sp. CTP-01 的对硫磷水解酶诱导合成性质

MECHANISM OF BIODEGRADATION OF ORGANOPHOSPHATE PESTICIDES IN AQUATIC ECOSYSTEM 4. THE INDUCIBLE SYNTHESIS CHARACTER OF PARATHION HYDROLASE IN PSEUDOMONAS SP. CTP-01

  • 摘要: Pseudomonas sp.CTP-01的对硫磷水解酶具有底物诱导合成性质。停滞生长期的细胞接触底物半小时即产生相应酶的合成,而指数生长期的细胞接触底物48小时后才发生酶的合成。甲基对硫磷及对硝基酚也具有诱导作用,可见合成对硫磷水解酶的诱导特异基团可能与对硝基酚及其苯环上的取代基有密切关系。

     

    Abstract: Parathion hydrolase may rapidly hydrolyze P-O bond of parathion molecule. Experiments show that the parathion-indueed formation of the enzyme in Pseudomonas sp. CTP-01 is responsible for parathion degradation. Methyl parathion and p-nitrophenol also served as inducers of the enzyme. Response of stationary phase cells to substrate induction is much faster than response of cells at the exponential phase of growth.

     

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