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Efficacy of diatomaceous earths and their low-dose combinations with spinosad or deltamethrin against three beetle pests of stored-maize

机译:硅藻土及其低剂量组合与辛糖胺或溴氰菊酯对储存玉米虫害的疗效的疗效及其低剂量组合

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A key element in postharvest IPM is the reduction of chemical residues in food through the use of reduced dosages of less toxic grain protectants. Two laboratory experiments were conducted: Experiment I determined the efficacies of straight diatomaceous earths (DEs)-"Chemutsi" (African raw DE), MN51 (new formulation) and Protect-It (R) (enhanced DE), and two new food grade DE-based formulations (A2 and A3) against adult Prostephanus truncatus (Horn), Sitophilus zeamais (Motschulsky) and Tribolium castaneum (Herbst) admixed with shelled maize. In Experiment II, Chemutsi and Protect-It (R) were further tested in varying combinations with low-dose deltamethrin and spinosad. At 21 days post-exposure, MN51 800 ppm and 1000 ppm, Chemutsi 1000 ppm, Protect-It (R) 600 ppm and food grade A3 150 ppm caused S. zeamais mortalities that were not significantly different from the positive control (Protect-It (R) 1000 ppm). However, after the same exposure period, all the straight DEs (applied at = 1000 ppm) and the DE-based food grade formulations were not effective on P. truncatus and T castaneum. In low dose combinations, 7 day mortalities showed high S. zeamais susceptibility to both DE-spinosad and DEdeltamethrin while P. truncatus was more susceptible only to DE-spinosad and T. castaneum to Protect-It (R)-deltamethrin only. At 21 days, all DE-spinosad and DE-deltamethrin treatments were effective and not significantly different from the commercial grain protectant (fenitrothion 1.0% w/w (10000 ppm) + deltamethrin 0.13% w/w (130 ppm)) on all test species. DE-spinosad and DEdeltamethrin combinations significantly suppressed (P 0.001) F-1 progeny for the three test species whereas straight DEs and DE-based food grade formulations did not. Our results showed that at half the label rates or lower, DE-spinosad and DE-deltamethrin combinations were effective alternative grain protectants that are safer and possibly cheaper. We also give the first report on the effectiveness of Chemutsi in combination with spinosad or deltamethrin on maize grain. (C) 2017 Elsevier Ltd. All rights reserved.
机译:采后IPM中的一个关键要素是通过使用减少的粒保护剂的剂量减少食物中的化学残留物。进行了两项实验室实验:实验方法我确定了直硅藻土(DES) - “化学物质”(非洲RAW DE),MN51(新配方)和保护 - 它(增强的DE)和两种新食品等级的效果对成人Prostephanus truncatus(喇叭),锡洛斯Zeamais(MOTSCHULSKY)和柴油(草药)与壳玉米混合的脱孢子菌(MOTSCHULSKY)和柴油的配方(A2和A3)。在实验II中,通过低剂量溴氰菊酯和Spinosad进一步测试Chemutsi和Protect-It(R)。在暴露后21天,MN51 800 ppm和1000ppm,Chemutsi 1000 ppm,保护 - 它(r)600 ppm和食品级A3 150 ppm引起的Zeamais死亡率与阳性对照没有显着差异(保护 - 它(r)1000 ppm)。然而,在相同的暴露期之后,所有直的DES(施用在= 1000ppm)和脱基的食物级配方上对P. truncatus和T castaneum没有有效。在低剂量组合中,7天的死亡率显示出对De-Spinosad和Defetlamethrin的高S.Zeamais易感性,而P. Truncatus仅对De-Spinosad和T.castaneum进行保护 - 它仅用于保护它(r)-dellamethrin。在21天,所有De-Spinosad和De-唑胺治疗方法都是有效的,并且与商业谷物保护剂(Fenitrohion 1.0%w / w(10000ppm)+溴氰菊酯0.13%w / w(130ppm))有效,并且没有显着差异物种。 De-Spinosad和Dedeltamethrin组合显着抑制了三种测试物种的(P <0.001)F-1后代,而直线DES和基于去的食品级配方则没有。我们的研究结果表明,在标签速率或更低的一半,De-Spinosad和De-Δδ组合是有效的替代谷物保护剂,更安全,可能更便宜。我们还向第一份关于Chemutsi与Spinosad或Deltamethrin组合的有效性的报告。 (c)2017 Elsevier Ltd.保留所有权利。

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