多种杀虫剂对苹果园捕食性螨的副作用

Pub Date : 2023-07-06 DOI:10.24349/9tgw-xrc4
V. Malagnini, M. Baldessari, C. Duso, A. Pozzebon, G. Angeli
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引用次数: 0

摘要

背景:安氏圆蚧是一种常见的捕食性螨,分布于欧洲和北美的果园中。它在预防蜘蛛螨爆发方面的作用得到了广泛认可,尤其是在使用选择性杀虫剂时。植物保护产品和捕食性螨虫之间的兼容性对于保持它们的活性至关重要。有必要采用多种方法调查杀虫剂对受益人的影响。目的:通过田间和实验室实验,评价多种杀虫剂对安氏a.andersoni的影响。方法:将新烟碱类药物(即啶虫脒、吡虫啉、噻虫脒和噻虫嗪)与拟除虫菊酯类药物(即氟缬氨酸tau)的效果进行比较,后者因对捕食性螨的负面影响而闻名。在意大利北部的一个实验果园中,杀虫剂被施用了1-3次。实验室试验的重点是它们对捕食性螨雌性生存和繁殖力的影响。结果:田间实验显示,与未经处理的对照相比,用新烟碱类或氟缬氨酸τ处理的地块中的捕食性螨数量有所下降。然而,新烟碱样地的捕食性螨的密度高于氟缬氨酸tau样地的记录。在用氟缬氨酸τ处理的小区中,蜘蛛螨(Panonychus ulmi)种群达到中等至高密度,而在其余小区中,它们的密度可以忽略不计。在实验室中,一些新烟碱类化合物对安氏安氏安伯利虫的存活产生了中度影响,同时它们显著降低了捕食性螨的繁殖力。相比之下,氟缬氨酸tau对捕食性螨的生存和繁殖力产生了严重影响。最后,暴露于杀虫剂后,逃逸率增加,这表明捕食性螨的行为可能发生了变化。结论:新烟碱类药物的施用显著影响了田间条件下捕食性螨的密度,这种现象似乎受到其对雌性繁殖力的影响。它们对生存的影响没有那么严重。讨论了这些结果对果园IPM策略的影响。
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Side-effects of a number of insecticides on predatory mites in apple orchards
Background: Amblyseius andersoni is a common predatory mite occurring in fruit orchards located in Europe and North America. Its role in preventing spider mite outbreaks is widely recognized, in particular when selective pesticides are used. The compatibility between plant protection products and predatory mites is crucial to preserve their activity. There is a need to investigate the effects of pesticides on beneficials using multiple approaches. Objectives: Field and laboratory experiments were conducted to evaluate the effects of a number of insecticides on A. andersoni. Methods: The effects of neonicotinoids (i.e., acetamiprid, imidacloprid, thiacloprid, thia-methoxam) were compared with those of pyrethroids (i.e., tau-fluvalinate), well known for their negative impact on predatory mites. Insecticides were applied 1-3 times in an experimental fruit orchard located in Northern Italy. Laboratory trials focused on their effects on the survival and the fecundity of predatory mite females. Results: Field experiments showed a decline in predatory mite numbers in plots treated with neonicotinoids or tau-fluvalinate compared to the untreated control. However, predatory mites in neonicotinoid plots reached higher densities compared to those recorded in tau-fluvalinate plots. Spider mite (Panonychus ulmi) populations reached moderate to high densities in plots treated with tau-fluvalinate while their densities were negligible in the remaining plots. Amblyseius andersoni survival was moderately affected by some neonicotinoids in the laboratory while they significantly reduced predatory mite fecundity. In contrast tau-fluvalinate exerted severe effects on survival and fecundity of predatory mites. Finally, escaping rate increased after pesticide exposure suggesting possible alterations in predatory mite behavior. Conclusions: Neonicotinoid applications significantly affected predatory mite densities in field conditions and this phenomenon appeared to be influenced by their impact on female fecundity. Their effects on survival were less severe. Implications of these results for IPM tactics in fruit orchards are discussed.
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