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首页> 外文期刊>International Journal of Environmental Research >The Ecotoxicity of Sugarcane Pesticides to Non-target Soil Organisms as a Function of Soil Properties and Moisture Conditions
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The Ecotoxicity of Sugarcane Pesticides to Non-target Soil Organisms as a Function of Soil Properties and Moisture Conditions

机译:甘蔗农药对非目标土壤生物的生态毒性与土壤性质和水分条件的关系

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To attend the increasing demand for food and energy, vast monocultures such as sugarcane, soy, and corn, often adopts routinely intensive application of pesticides and chemical fertilizers, disregarding their potential effects on non-target soil organisms, which are crucial for soil functioning. In this study, we present the assessment of toxic effects of the commercial herbicide DMA (R) 806 BR (active ingredient: 2,4-D) and of the insecticide Regent (R) 800 WG (active ingredient: fipronil) to the non-target terrestrial plant Raphanus sativus var. acanthioformis (dicotyledon) and to the collembolan species Folsomia candida, in combination with different soil moisture conditions in natural and artificial tropical soils. Plant growth and biomass were severely affected by the presence of DMA alone, with significant differences from the control treatment already detected at 0.13 mg/kg/dw. Upon low soil moisture (20, 40, 60 WHC), the toxicity of DMA to plants was diminished, exhibiting an antagonistic pattern of interaction between DMA and soil moisture. Soil composition had a significant influence on survival and reproduction of collembola especially at high soil moisture content. In the natural soil, 80 of the water holding capacity (WHC) induced 100 collembola mortality whereas, in the tropical artificial soil (TAS), this same moisture condition had a negligible effect on survival. Reproduction was mainly affected by fipronil under drought conditions (20 WHC) at both soil types, possibly correlated with increased concentration of fipronil in the soil pore water at such conditions. Results herein presented highlight the requisite of including abiotic fluctuations in hazard assessment of pesticides to preserve soil function provided by biota.
机译:为了满足日益增长的粮食和能源需求,甘蔗、大豆和玉米等大型单一栽培作物经常采用常规密集施用农药和化肥,而忽视了它们对非目标土壤生物的潜在影响,而这些生物对土壤功能至关重要。在这项研究中,我们介绍了商业除草剂 DMA (R) 806 BR(有效成分:2,4-D)和杀虫剂 Regent (R) 800 WG(活性成分:氟虫腈)对非目标陆生植物 Raphanus sativus var. acanthioformis (双子叶植物) 和 collembolan 物种 Folsomia candida 的毒性影响的评估,结合天然和人工热带土壤中的不同土壤水分条件。单独使用DMA对植物生长和生物量有严重影响,与已检测到的对照处理(0.13 mg/kg/dw)有显著差异。在土壤湿度较低(20%、40%、60%WHC)时,DMA对植物的毒性降低,表现出DMA与土壤水分相互作用的拮抗模式。土壤组成对桫椤的生存和繁殖有显著影响,尤其是在高土壤含水量下。在天然土壤中,80% 的持水能力 (WHC) 导致 100% 的 collembola 死亡率,而在热带人工土壤 (TAS) 中,相同的水分条件对存活的影响可以忽略不计。两种土壤类型在干旱条件下(20% WHC)均主要受氟虫腈的影响,可能与干旱条件下土壤孔隙水中氟虫腈浓度的增加有关。本文介绍的结果强调了在农药危害评估中纳入非生物波动的必要性,以保护生物区系提供的土壤功能。

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