生物农药和天然制剂对番茄、黄瓜生态防护病虫害调控的影响

Emina Salihović, B. Salkić, E. Imširović, Sedina Hodžić, S. Noćajević, Azra Salkić
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引用次数: 0

摘要

为了应对环境污染和食品安全问题,有机农业越来越多地出现在农场。然而,由于植物病害频繁,有机农民的生产风险很大。本研究比较了有机农业中允许使用的植物保护制剂和常规农业中使用的植物药物制剂的影响,并观察了它们在露天番茄和黄瓜生产中对病虫害的调控效果。研究对象包括番茄品种“牛心”和黄瓜品种“长绿”。研究时间为从种植到收获4个月(期间:2020年5月)。- 2020年8月),直到完成70%以上的植被。这些测试是在2020年植被期期间,在Živinice镇(图普科维奇)农村地区海拔250米的一个开阔地带进行的。试验在两个独立的地块上进行。使用植物药物(常规)制剂的地块与使用有机农业允许的制剂的地块物理隔离。使用TFA Dostmann温度计(-25ºC至+ 50ºC)进行温度测量,并将其设置在开阔场地2米的高度。香港的雨量是由气象局的Dostmann雨量计监测。在有机植保试验中,害虫用荨麻液和活性物质苏云金芽孢杆菌制剂,植物病害用牛奶+苏打溶液和氧化铜。在常规防护试验中,采用活性物质啶虫脒和吡虫啉制剂进行害虫防治,并采用代森锰锌+铜和甲氧基- m +代森锰锌进行病害防治。治疗后,监测疾病的发病情况。综上所述,与有机制剂相比,常规杀虫剂对害虫的调节效果更好,而在有机制剂中,荨麻溶液的效果更好。用氧化铜进行植物保护的效果与用常规制剂进行病害防治的效果相同。这表明植物保护在有机生产中是可能的,但必须更频繁和及时地使用制剂。
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Influence of Biopesticides and Natural Preparations on the Regulation of Diseases and Pests in the Ecological Protection of Tomatoes (Lycopersicon esculentum L.) and Cucumbers (Cucumis sativus L.)
Organic agriculture is increasingly present on farms in response to environmental pollution and food safety. However, organic farmers have a big production risk due to frequent plant diseases. This research was conducted to compare the influence of preparations for plant protection allowed in organic agriculture and phytopharmaceutical preparations which are used in conventional agriculture and observe their effect in regulation of pests and diseases in tomato and cucumber production in an open field. The research included the tomato variety „Oxheart“, and the cucumber variety „Long green“. The time of research was four months from planting to harvest (period: May 2020. – August 2020.) until more than 70% of vegetation was completed. The tests were performed at a location in the rural part of the town of Živinice (Tupković) in an open field with an altitude of 250 m, during the vegetation period of 2020. The tests were performed on two separate plots. The plot where phytopharmaceutical (conventional) preparations were used, was physically separated from the plot where preparations allowed in organic agriculture were used. Temperature measurement was performed using a TFA Dostmann thermometer (-25ºC to + 50ºC) and it was set at a height of 2 meters in the open field. The amount of rainfall was monitored with the TFA Dostmann rain gauge. In the tests with organic plant protection, the nettle solution and preparation with active substance Bacillus thuringiensis for pests was used, and for plant diseases, the milk+soda solution and copper-oxide were used. In the tests with conventional protection, preparations with active substances acetamiprid and imidacloprid for pests were used, and the diseases were treated with mancozeb+copper and metalaxyl-M+mancozeb. After treatments, the onset of diseases was monitored. To conclude, the conventional insecticides gave better results in the regulation of pests in comparison to organic preparations, and in the case of organic preparations, the nettle solution had a better effect. Plant protection with copper-oxide gave the same results as using conventional preparations in disease regulation. This shows that plant protection is possible in organic production, but preparations must be applied more often and in a timely manner.
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