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首页> 外文期刊>Environmental Entomology >Gravimetric Method for Determining Stage of an Obligate Internally Feeding Stored-Product Insect Pest, the Cowpea Weevil
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Gravimetric Method for Determining Stage of an Obligate Internally Feeding Stored-Product Insect Pest, the Cowpea Weevil

机译:重量法测定专性内部喂食的储藏产品虫害,the豆象鼻虫的阶段

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We conducted two experiments to develop a gravimetric method for determining the stadia of Callosobruchus maculatus developing in cowpeas. An important step was to develop regression equations for predicting weight changes in uninfested cowpeas to correct for changes that occur in weight as a result of changing environmental conditions, such as temperature, relative humidity, and barometric pressure. This was vital because we needed to have a way of determining weight changes in infested peas that were caused by the insects developing within them; even the weight of uninfested peas changed over the course of the experiments. The observed weight of each infested pea was corrected based on the proportion weight change in uninfested peas each time weighing was done to get an estimate of the cumulative change in weight caused by the presence of the insect. For each infested pea, cumulative change in weight was plotted against time, and plots were analyzed to determine whether a pattern existed that could be used to consistently distinguish stadia. In the second experiment we used an ultrasonic detector to validate results from the gravimetric method. We found that the gravimetric method provided accurate information on duration of the egg, larval, and pupal stages of C. maculatus; however, the gravimetric method could not reliably distinguish the four larval stages of C. maculatus. Our paper also discusses practical applications of the gravimetric method for determining the stadia of internally feeding insects in the context of the current and previous research.
机译:我们进行了两个实验,以开发一种重量分析法来确定cow豆中发育的黄os愈伤组织。重要的一步是开发回归方程式,以预测未受感染的pea豆的体重变化,以校正由于环境条件(例如温度,相对湿度和气压)变化而引起的体重变化。这是至关重要的,因为我们需要一种方法来确定受其侵害的豌豆引起的被侵染豌豆的体重变化;在实验过程中,甚至未感染豌豆的重量也发生了变化。每次称重时,根据未侵染豌豆中体重的比例变化,对观察到的每个侵染豌豆的重量进行校正,以估计由昆虫的存在引起的重量累积变化。对于每个受侵染的豌豆,将重量的累积变化与时间作图,并对图进行分析,以确定是否存在可用于一致地鉴别体育场地的模式。在第二个实验中,我们使用了超声波探测器来验证重量法的结果。我们发现,重量分析法提供了有关黄mac鱼卵,幼虫和p期的准确信息。然而,重量分析法不能可靠地区分斑纹梭菌的四个幼虫阶段。在当前和以前的研究背景下,我们还讨论了重量分析法在确定内部摄食昆虫的粪田中的实际应用。

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