State Key Laboratory for Biology of Plant Disease and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, 100193, China.
Institute for Agri-food Standards and Testing Technology, Shanghai Academy of Agricultural Science, Shanghai, 201106, China.
Chemosphere. 2020 Apr;244:125540. doi: 10.1016/j.chemosphere.2019.125540. Epub 2019 Dec 3.
Allyl isothiocyanate (AITC) is a soil fumigant derived from plants that can effectively control soil-borne diseases. Fully understanding the impact of various factors on its degradation can contribute to its effectiveness against pests and diseases. First, orthogonal design determined the extraction method of AITC in soil, that is using ethyl acetate as the extraction reagent, vortexing for 1 min as the extraction method and holding for 30 min as the method time. Then we studied the effects of soil texture and environmental factors on the rate and extent of AITC degradation in soil. The half-lives of nine origins soils varied from 12.2 to 71.8 h that were affected by the soil's electrical conductivity, available nitrogen, pH and organic matter content. Biotic degradation of AITC contributed significantly (68%-90%) of the total AITC degradation in six soil types. The degradation rate of AITC decreased as the initial dose of AITC increased. The degradation rate of AITC in Suihua soil generally increased with increasing temperature and soil moisture. The effect of temperature on AITC degradation was more pronounced when the soil was moist, which has practical implications for the control of soil pests and diseases. In agricultural soil, the soil's characteristics and environmental factors should be considered when determining the appropriate AITC dose suitable for soil borne disease while at the same time minimizing emissions and impact on the environment.
丙烯基异硫氰酸酯(AITC)是一种源自植物的土壤熏蒸剂,可有效控制土传病害。充分了解各种因素对其降解的影响,可以提高其对病虫害的防治效果。首先,正交设计确定了土壤中 AITC 的提取方法,即用乙酸乙酯作为提取试剂,涡旋 1 分钟作为提取方法,保持 30 分钟作为方法时间。然后,我们研究了土壤质地和环境因素对土壤中 AITC 降解速率和程度的影响。9 种起源土壤的半衰期从 12.2 到 71.8 小时不等,受土壤电导率、有效氮、pH 值和有机质含量的影响。生物降解 AITC 对土壤中 AITC 的总降解率有显著影响(68%-90%)。随着 AITC 初始剂量的增加,AITC 的降解速率降低。在绥化土壤中,AITC 的降解速率通常随着温度和土壤水分的增加而增加。在土壤湿润时,温度对 AITC 降解的影响更为明显,这对控制土壤病虫害具有实际意义。在农业土壤中,在确定适合土传病害的 AITC 剂量时,应考虑土壤的特性和环境因素,同时尽量减少排放和对环境的影响。