首页> 美国卫生研究院文献>Insects >Testing the Insecticidal Activity of Nanostructured Alumina on Sitophilus oryzae (L.) (Coleoptera: Curculionidae) Under Laboratory Conditions Using Galvanized Steel Containers
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Testing the Insecticidal Activity of Nanostructured Alumina on Sitophilus oryzae (L.) (Coleoptera: Curculionidae) Under Laboratory Conditions Using Galvanized Steel Containers

机译:在实验室条件下使用镀锌钢制容器测试纳米结构氧化铝对米曲霉(L.)(鞘翅目:Curculionidae)的杀虫活性

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摘要

Most stored-grain pest insects increase their population within a relatively short time, causing serious damage to stored products. Sitophilus oryzae (L.) is one of the world’s major stored-grain pest insects and was chosen as the model insect for our studies. This study compared the efficacy of three different dusts under laboratory conditions: aluminum dust (nanostructured alumina), DiatomiD®, and Protect-It® (commercial diatomaceous earth). Parental survival, grain damage, and progeny production were measured at 250 and 500 ppm in treated wheat. The tests were conducted in 400 mL galvanized steel jars, an experimental model used for the first time to measure the effectiveness of nanostructured alumina, since most studies have been typically performed in small petri dishes. Parental survival obtained was highest in the untreated controls, followed in decreasing order by DiatomiD®, Protect-It®, and nanostructured alumina (NSA). NSA caused the greatest mortality. All treatments significantly reduced grain weight loss and frass production in wheat infested by S. oryzae. The degree of progeny (F1) suppression was directly related to the product and treatment rate, progeny being significantly suppressed by NSA in wheat followed by Protect-It® and DiatomiD®. Therefore, NSA had a greater impact on insect population dynamics.
机译:大多数储粮害虫都在相对较短的时间内增加了种群,对储藏产品造成了严重破坏。米曲霉(Sitophilus oryzae,L。)是世界上主要的储粮害虫之一,并被选为我们研究的典范昆虫。这项研究比较了三种不同粉尘在实验室条件下的功效:铝粉(纳米结构氧化铝),DiatomiD ®和Protect-It ®(商业硅藻土)。在处理过的小麦中,亲本存活率,籽粒损伤和子代产量分别为250和500 ppm。该测试是在400 mL镀锌钢瓶中进行的,这是首次用于测量纳米结构氧化铝有效性的实验模型,因为大多数研究通常是在小型培养皿中进行的。在未处理的对照组中,父母的存活率最高,其次依次是DiatomiD ®,Protect-It ®和纳米结构氧化铝(NSA)。 NSA造成最大的死亡率。所有处理均显着减少了受米曲霉侵染的小麦的谷物减重和减少的无花果产量。子代(F1)的抑制程度与产物和处理速率直接相关,小麦中的NSA显着抑制了子代,其次是Protect-It ®和DiatomiD ®。因此,NSA对昆虫种群动态具有更大的影响。

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