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Development of methods to evaluate susceptibility of soybean aphid to imidacloprid and thiamethoxam at lethal and sublethal concentrations

机译:开发评估大豆蚜对吡虫啉和噻虫嗪在致死浓度和亚致死浓度下的敏感性的方法

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摘要

The soybean aphid, Aphis glycines Matsumura (Homoptera: Aphididae), is a recent introduction (2000) from Asia and has become a serious soybean [Glycine max (L.) Merr. (Fabaceae)] pest in North America. Seed treatments using the neonicotinoid insecticides, imidacloprid and thiamethoxam, have been suggested as a method of control, and the use of these insecticides is becoming widespread. As a consequence, there is increased potential to select for resistance to these compounds. In the case of soybean aphids, baseline susceptibility to neonicotinoid insecticides and standardized methods for bioassay are lacking. A bioassay technique that uses excised soybean leaves immersed in an insecticide solution was developed to determine systemic insecticidal activity at lethal and sublethal concentrations. Mortality and population growth inhibition were evaluated after 7 days. Life table parameters were calculated by exposing 1-day-old aphids to three concentrations of thiamethoxam. Aphid mortality and nymph production were recorded daily until the entire cohort collapsed. Soybean aphid age-specific survivorship, fecundity, net reproductive rate, longevity, intrinsic rate of increase, discrete daily growth rate, and life expectancy were all significantly reduced at higher thiamethoxam concentrations. Soybean aphid response to both insecticides was similar, and both compounds were very toxic with LC50s of 31.3 and 16.9 ng ml−1 and EC50s of 6.3 and 5.4 ng ml−1 for imidacloprid and thiamethoxam, respectively. These results indicate that the methods developed in this study had negligible impact on the life table estimates measured and can be used to develop a baseline of susceptibility as a benchmark for subsequent resistance monitoring. Given the rapid and widespread adoption of this new insecticide class, vigilant monitoring for changes in susceptibility will be essential to its long-term sustainability.
机译:大豆蚜虫,Aphis glycines Matsumura(Homooptera:Aphididae),是最近从亚洲引进的(2000),已经成为一种重要的大豆[Glycine max(L.)Merr.。 (Fabaceae)]北美害虫。已经提出了使用新烟碱类杀虫剂吡虫啉和噻虫嗪进行种子处理的控制方法,这些杀虫剂的使用正在变得广泛。结果,增加了选择对这些化合物的抗性的潜力。就大豆蚜虫而言,缺乏对新烟碱类杀虫剂的基线敏感性和用于生物测定的标准化方法。开发了一种生物测定技术,该技术使用浸没在杀虫剂溶液中的切下的大豆叶片来确定在致死浓度和亚致死浓度下的全身杀虫活性。 7天后评估死亡率和人口增长抑制。通过将1天大的蚜虫暴露于三种浓度的噻虫嗪中来计算寿命表参数。每天记录蚜虫死亡率和若虫产量,直到整个队列崩溃。在较高的噻虫嗪浓度下,大豆蚜虫的特定年龄存活率,繁殖力,净生殖率,寿命,内在增长率,离散的每日生长率和预期寿命均显着降低。大豆蚜虫对两种杀虫剂的反应都相似,两种化合物的毒性都非常高,吡虫啉和噻虫嗪的LC50分别为31.3和16.9 ng ml-1,EC50分别为6.3和5.4 ng ml-1。这些结果表明,本研究中开发的方法对测得的寿命表估算值的影响可忽略不计,可用于建立磁化率基线作为后续电阻监测的基准。鉴于这种新型杀虫剂已被迅速广泛采用,因此对药敏性变化进行警惕的监测对于其长期可持续性至关重要。

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