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首页> 外文期刊>International Journal of Plant & Soil Science >Effects of Three Pesticides (Atrazine, Deltamethrin and Acetamiprid + Cypermethrin), Two Plant Species (Vetiveria nigritana Benth. and Oxythenantera abyssinica Linn.) and Their Interactions on the Biological Activity of Lixisols and Vertisols of Cotton Ag
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Effects of Three Pesticides (Atrazine, Deltamethrin and Acetamiprid + Cypermethrin), Two Plant Species (Vetiveria nigritana Benth. and Oxythenantera abyssinica Linn.) and Their Interactions on the Biological Activity of Lixisols and Vertisols of Cotton Ag

机译:三种农药(阿特拉津,溴氰菊酯和乙草胺+氯氰菊酯),两种植物(Vetiveria nigritana Benth。和Oxythenantera abyssinica Linn。)的影响及其相互作用对棉花Ag的Lixisol和Vertisols生物活性的影响

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Aims: The application of pesticides can have adverse effects on the biology of agricultural soils. This study had 3 objectives: (i) evaluate the impact of the three pesticides on soils, (ii) evaluate the impact of the two plant species on soils and (iii) also evaluate the interaction of pesticides and plant species on soils. Methodology: In order to achieve this aim, an experimental test was conducted in a vegetal vase with 7 treatments. The experimental device used is a split-plot device with four repetitions for each soil type. The main treatments are plant species and secondary treatments consist of pesticides. The main factor had three modalities namely: absence of plant, Oxytenanthera abyssinica and Vetiveria nigritana . As for the secondary factor, it comprises four modalities which are: control, Atrazine, Deltamethrin and Acetamiprid + Cypermethrin. Deltamethrin and acetamiprid + cypermethrin are not a mixture. They constitute 2 different pesticides. It is rather acetamiprid + cypermethrin which is a mixture of acetamiprid and cypermethrin. Results: Physicochemical characteristics are generally lower in lixisols compared to vertisols, except P and K. Microbial biomass is lower in the presence of plant species regardless of soil type. Microbial biomass has declined regardless of the type of pesticide. This decrease was significant (P = 0.045) in lixisols. Pesticide interaction and plant species significantly increased (P = 0.01) microbial biomass in the presence of Vetiveria nigritana and respiratory activeness for both species. The highest cumulative release values ??are found in soils without plants. Analysis of variance revealed highly significant differences (P 2 in lixisols and vertisols. The interaction between plant species and pesticides increases microbial biomass and respiratory activity in both soil types.
机译:目的:农药的使用会对农业土壤的生物学产生不利影响。这项研究有3个目标:(i)评估三种农药对土壤的影响,(ii)评估两种植物对土壤的影响,以及(iii)评估农药与植物对土壤的相互作用。方法:为了达到这个目的,在经过7种处理的植物花瓶上进行了实验测试。所使用的实验设备是对每种土壤类型具有四个重复项的剖分设备。主要处理方法是植物种类,辅助处理方法包括农药。主要因素具有三种模式,即:不存在植物,无氧天牛和黑香根草。至于次要因素,它包括四种模式:对照,阿特拉津,溴氰菊酯和乙酰胺+氯氰菊酯。溴氰菊酯和乙草胺+氯氰菊酯不是混合物。它们构成两种不同的农药。确切的说是扑热息痛+氯氰菊酯,它是扑热息痛和氯氰菊酯的混合物。结果:除磷和钾外,利索溶胶的理化特性通常比藜酚低。在存在植物物种的情况下,无论土壤类型如何,微生物生物量均较低。无论农药的种类如何,微生物的生物量都在下降。利昔索尔的下降显着(P = 0.045)。在香根草的存在下,两种物种的农药相互作用和植物物种均显着增加(P = 0.01)微生物生物量。在没有植物的土壤中发现了最高的累积释放值。方差分析显示,利索溶胶和松香酚的差异非常显着(P 2 。植物物种与农药之间的相互作用增加了两种土壤类型的微生物生物量和呼吸活性。

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