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Assessing the effects of L-cyhalothrin and rain events on soil microarthropod community using a terrestrial model ecosystem

机译:使用陆地模型生态系统评估L-氟氯氰菊酯和降雨事件对土壤微节肢动物群落的影响

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摘要

To identify potential risks derived from changing climatic regimes has become a major concern worldwide. Alterations of rain patterns are expected to modify the environmental responses of biological communities in soil, often due to alterations in moisture levels, a key factor for soil microarthropods. Pesticide use imposes great disturbances to soil, altering its functional dynamics. Since environmental conditions such as rain and temperature regimes can interfere with chemical speciation and/or chemical’s persistence in soil, soil organisms might be affected in a different way in contaminated soil under different climatic scenarios. Lambda-cyalothrin is a pyrethroid insecticide widely used to control insect pests for public health and cultivated lands. Annual agricultural use of L-cyalothrin has increased over the last years, while insecticide residuals have been detected in irrigation and storm-runoff water, and associated sediments as well. The potential risk of this pesticide to aquatic organisms is known to be high, but its effects on terrestrial communities remain practically unknown. Moreover, to date, the combined effect of changes on rain patterns and L-cyhalothrin application has not been investigated. Aiming to fill this gap, a semi-field experiment was performed using Terrestrial Model Ecosystems (TMEs). The effect of different doses of the commercial formulation of Judo® insecticide, containing L-cyalothrin as active ingredient (a.i.), was evaluated in soil fauna communities of a pasture field free of pesticide applications for more than 5 years. Doses of 0, 7.5 and 37.5 g of a.i./ha were investigated, equivalent to 0, 1 and 5 times the recommended dose, respectively. Three replicates per test dose were exposed to different rain regimes to reach moistures corresponding to 30, 50 and 70% of the water-holding capacity of the field soil. After 2 and 8 weeks of insecticide application, soil samples were collected to characterize soil fauna communities (microarthropods, nematodes, enchytraeids and earthworms). In this study only the results of mites and Collembola are shown. These data, although with high variability, suggest that toxicity levels derived from L-cyalothrin applications may be influenced by rain regime and that composition of soil mesofauna communities may be a good indicator of the influence of pesticides along time under changing climatic conditions
机译:查明气候变化带来的潜在风险已成为世界范围内的主要问题。降雨模式的改变有望改变土壤中生物群落对环境的响应,这通常是由于水分含量的变化,而水分含量是土壤微节肢动物的关键因素。农药的使用会对土壤造成极大干扰,从而改变其功能动力学。由于降雨和温度条件等环境条件会干扰化学物质的形成和/或化学物质在土壤中的持久性,因此在不同气候情景下,受污染土壤中的土壤生物可能以不同的方式受到影响。 Lambda-cyalothrin是一种拟除虫菊酯类杀虫剂,广泛用于控制公共卫生和耕地的害虫。在过去的几年中,每年在农业上使用的L-氰尿菊酯有所增加,同时在灌溉和暴雨径流水中以及相关的沉积物中也发现了杀虫剂残留。已知该农药对水生生物的潜在风险很高,但其对陆地生物的影响实际上仍是未知的。此外,迄今为止,尚未研究变化对降雨模式和L-氟氯氰菊酯施用的综合影响。为了填补这一空白,使用陆地模型生态系统(TME)进行了半田野试验。在不使用农药的牧场的土壤动物群落中,评估了含有L-邻氯氰菊酯作为活性成分(a.i.)的不同剂量Judo®杀虫剂商业配方的效果,效果持续5年以上。研究了0、7.5和37.5 g a.i./ha的剂量,分别相当于建议剂量的0、1和5倍。每份测试剂量重复三次重复试验,以暴露于不同的雨水条件下,以达到相当于田间土壤保水能力的30%,50%和70%的水分。在施用杀虫剂2周和8周后,收集土壤样品以表征土壤动物群落(微节肢动物,线虫,肠线虫和earth)。在这项研究中,仅显示了螨虫和Collembola的结果。这些数据尽管变化很大,但表明L-氟氰菊酯的应用所产生的毒性水平可能受到雨水条件的影响,土壤中生动物群落的组成可能是变化的气候条件下农药随时间影响的良好指标。

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