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有机管理和传统管理土壤中氯氰菊酯和二嗪农的微生物降解研究进展

Development of microbial degradation of cypermethrin and diazinon in organically and conventionally managed soils.

作者信息

Fenlon Katie A, Jones Kevin C, Semple Kirk T

机构信息

Department of Environmental Science, Faculty of Science and Technology, Lancaster University, Lancaster, UK LA1 4YQ.

出版信息

J Environ Monit. 2007 Jun;9(6):510-5. doi: 10.1039/b700668c. Epub 2007 May 16.

Abstract

The behaviour of pesticides in the soil is a complex issue and is controlled by the physical, chemical and biological properties of the soil. The ability of microorganisms to degrade pesticides is not only controlled by the bioavailability of a chemical but also by their capacity to develop the ability to utilise available chemicals. The development of catabolism in the indigenous soil microflora of four organically and one conventionally managed soils was investigated for two pesticides: cypermethrin and diazinon. Soils were amended with cypermethrin and diazinon and aged for 0, 2, 4, 6, 8, and 14 weeks and, at each time point, mineralisation of freshly added 14C-cypermethrin or 14C-diazinon was measured by trapping 14CO2. In general, contact times between the soil and the pesticide resulted in a reduction in the lag phase (the period of time before mineralisation exceeded 5% of the added activity), followed by increases in the extent of mineralisation. Cypermethrin was mineralised significantly in all soils; whereas, diazinon was only appreciably mineralised in two of the soils, most notably in the organic soil from Redesdale. Statistical analysis showed pH and organic matter content of the soil had a significant effect on the extent of mineralisation (P< or = 0.05) of the cypermethrin in the soils.

摘要

农药在土壤中的行为是一个复杂的问题,受土壤的物理、化学和生物学特性控制。微生物降解农药的能力不仅受化学物质生物可利用性的控制,还受其发展利用可用化学物质能力的控制。研究了四种有机管理土壤和一种传统管理土壤中本地土壤微生物群落对两种农药(氯氰菊酯和二嗪农)的分解代谢发展情况。向土壤中添加氯氰菊酯和二嗪农,陈化0、2、4、6、8和14周,在每个时间点,通过捕获14CO2来测量新添加的14C-氯氰菊酯或14C-二嗪农的矿化情况。一般来说,土壤与农药的接触时间导致滞后期(矿化超过添加活性5%之前的时间段)缩短,随后矿化程度增加。氯氰菊酯在所有土壤中都有显著矿化;而二嗪农仅在两种土壤中有明显矿化,最显著的是来自雷德斯代尔的有机土壤。统计分析表明,土壤的pH值和有机质含量对土壤中氯氰菊酯的矿化程度有显著影响(P≤0.05)。

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