Key Laboratory of Plant Protection Resources and Pest Management, Ministry of Education, College of Plant Protection, Northwest A&F University, Yangling, Shaanxi, 712100, China.
Sci Rep. 2017 Jul 17;7(1):5521. doi: 10.1038/s41598-017-05923-8.
Considering the fact that biopesticides are increasingly used to replace synthetic pesticides in pest control, it is necessary to assess their ecotoxicity and especially their non-target effects on soil microorganisms, which is largely unknown. In this study, the effects of the synthetic pesticide carbendazim and the biopesticides (cantharidin and norcantharidin) on soil microbial parameters in a silt loam soil were evaluated. By using commercial formulations at the recommended and higher rates, both cantharidin and norcantharidin induced adverse effects on soil invertase, phosphatase activities and fungal gene structure, but these changes were transient. After about two weeks, the harmful effects owing to the application of pesticides phased out and eventually became comparable with non-treated samples. The degradation of cantharidin and norcantharidin was rapid and can be completed within a few days in the soil. None of the three pesticides caused significant shifts in urease activity. This study provides a comprehensive assessment of the soil microbial toxicity of these biopesticides for reasonable and efficient usage.
鉴于生物农药在害虫防治中越来越多地被用来替代合成农药,因此有必要评估它们的生态毒性,特别是它们对土壤微生物的非靶标效应,而这在很大程度上是未知的。在这项研究中,评估了合成农药多菌灵和生物农药(斑蝥素和去斑蝥素)对粉壤土土壤微生物参数的影响。通过使用商业制剂在推荐和更高的剂量下,斑蝥素和去斑蝥素都对土壤转化酶、磷酸酶活性和真菌基因结构产生了不良影响,但这些变化是短暂的。大约两周后,由于施用农药而产生的有害影响逐渐消失,最终与未处理的样本相当。斑蝥素和去斑蝥素的降解非常迅速,在土壤中几天内即可完成。这三种农药都没有导致脲酶活性发生显著变化。这项研究为这些生物农药的土壤微生物毒性提供了全面评估,以实现合理、高效的使用。