Comparative toxicity of spinetoram to Trialeurodes vaporariorum Westwood and its parasitoid Eencarsia formosa Gahan

Tanja Drobnjakovic, Mirjana Prijovic, Emanuele Porcu, Michele Ricupero, Gaetano Siscaro, Lucia Zappala, Antonio Biondi
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Abstract

The role of selective new generation bioisecticides, beside their effectiveness against key pests, relies on their safety to beneficial arthropods. Spinetoram, a semi-synthetic analogue of the microbial-derived bioinsecticide spinosad is registered worldwide for application in numerous crops, but assessment of its ecotoxicological risk to beneficial arthropods has scarcely been documented. Moreover, this is the first report on toxic effects of spinetoram on a pest, the greenhouse whitefly Trialeurodes vaporariorum Westwood (Hemiptera: Aleyrodidae), and/or its successful biocontrol agent, the parasitoid Encarsia formosa Gahan (Hymenoptera: Aphelinidae). Under laboratory conditions, we assessed the acute toxicity of spinetoram insecticide (25% a.i.) to adults, nymphs and eggs of the greenhouse whitefly, as well as to parasitoid adults and pupae. In all concentration-response bioassays, the spinetoram insecticide was applied to tobacco leaves settled onto 1% agar layer in ventilated Petri dishes using a Potter spray tower. The parameters of spinetoram acute toxicity to adults of both the pest and the parasitoid were evaluated in residual contact bioassays, while whitefly eggs and nymphs, and parasitoid pupae were topically treated with a series of spinetoram concentrations, covering a range of 10-90% mortality. Lethal spinetoram effects on the parasitoid E. formosa were assessed through selectivity ratio (SR) estimations, showing the ratios beetween median lethal concentrations (LC50s) estimated for the parasitoid, and LC50s estimated for the pest. The following LC50 values were obtained: 4.593, 15.027 and 11.73 mg a.i./l for whitefly adults, nymphs and eggs, respectively, and 0.686 and 1.715 mg a.i./l for parasitoid adults and pupae, respectively. The calculated SR estimations were below 1, indicating that spinetoram insecticide is non-selective to both tested stages of the parasitoid E. formosa. A more detailed understanding of spinetoram impact on E. formosa in whitefly integrated management requires further evaluation of sublethal effects and greenhouse trials, with an emphasis on population-level responses.
刺螨对白刺螟及其寄生蜂台湾飞蛾的毒性比较
选择性新一代生物杀虫剂的作用,除了对主要害虫有效外,还取决于它们对有益节肢动物的安全性。Spinetoram是一种微生物衍生生物杀虫剂spinosad的半合成类似物,已在全球范围内注册用于许多作物,但其对有益节肢动物的生态毒理学风险评估几乎没有记录。此外,这是第一次报道spinetoram对温室白蛉(半翅目:白蛉科)和/或其成功的生物防治剂——寄生蜂(膜翅目:白蛉科)的毒性作用。在实验室条件下,测定了25%杀虫剂spinetoram对温室白蝇成虫、若虫和卵以及寄生蜂成虫和蛹的急性毒性。在所有浓度响应生物试验中,使用波特喷雾塔将spinetoram杀虫剂施用于烟叶,烟叶沉降在通风培养皿中1%的琼脂层上。采用残留接触生物测定法对白蝇和拟寄生虫成虫的急性毒性参数进行了评价,并对白蝇卵、若虫和拟寄生虫蛹进行了不同浓度的刺虫虫局部处理,死亡率在10 ~ 90%之间。通过选择性比(SR)估计,评估了刺曲仑对台湾寄生蜂的致死效应,显示了寄生蜂估计的中位致死浓度(lc50)与害虫估计的lc50之间的比率。结果表明:粉虱成虫、若虫和卵的LC50分别为4.593、15.027和11.73 mg a.i./l,寄生蜂成虫和蛹的LC50分别为0.686和1.715 mg a.i./l。计算得到的SR值均小于1,表明该杀虫剂对台湾寄生蜂的两个试验阶段均无选择性。为了更详细地了解白蝇综合管理中spinetoram对台湾白蝇的影响,需要进一步评估亚致死效应和温室试验,重点是种群水平的反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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