Njoroge Anastasia W, Mankin Richard W, Smith Bradley W, Baributsa Dieudonne
Department of Entomology, Purdue University, 901 W. State Street, West Lafayette, IN 47907, USA.
United States Department of Agriculture, Agricultural Research Service Center for Medical, Agricultural and Veterinary Entomology, 1700 SW 23rd Dr, Gainesville, FL 32608, USA.
Insects. 2018 Apr 20;9(2):45. doi: 10.3390/insects9020045.
Acoustic monitoring was applied to consider hermetic exposure durations and oxygen levels required to stop adult activity and economic damage on cowpea. A 15-d study was conducted with six treatments of 25, 50, and 100 adults in 500 and 1000 mL jars using acoustic probes inserted through stoppers sealing the jars. Acoustic activity as a result of locomotion, mating, and egg-laying was measured by identifying sound impulses with frequency spectra representative of known insect sounds, and counting trains (bursts) of impulses separated by intervals of <200 ms, that typically are produced only by insects. By the end of the first week of storage in all treatments, oxygen levels declined to levels below 4%, which has been demonstrated to cause mortality in previous studies. Concomitantly, insect sound burst rates dropped below an acoustic detection threshold of 0.02 bursts s, indicating that the insects had ceased feeding. Statistically significant relationships were obtained between two different measures of the acoustic activity and the residual oxygen level. Based on the experimental results, a simple equation can be used to estimate the time needed for oxygen to decline to levels that limit insect feeding damage and thus grain losses in hermetic storage containers of different insect population levels and various volumes.
采用声学监测来确定使豇豆中成年昆虫停止活动及造成经济损失所需的密封暴露持续时间和氧气水平。进行了一项为期15天的研究,设置了六种处理,分别在500毫升和1000毫升的广口瓶中放入25只、50只和100只成年昆虫,通过插入密封广口瓶的瓶塞中的声学探头进行监测。通过识别具有已知昆虫声音特征频谱的声音脉冲,并对间隔时间小于200毫秒的脉冲序列(爆发)进行计数,来测量由运动、交配和产卵产生的声学活动,这种间隔时间通常只有昆虫才会产生。在所有处理中,储存第一周结束时,氧气水平降至4%以下,先前的研究已证明这会导致昆虫死亡。与此同时,昆虫声音爆发率降至声学检测阈值0.02次/秒以下,表明昆虫已停止取食。在声学活动的两种不同测量值与残余氧气水平之间获得了具有统计学意义的关系。根据实验结果,可以使用一个简单的方程式来估算氧气降至限制昆虫取食损害从而减少不同昆虫种群水平和不同体积密封储存容器中谷物损失的水平所需的时间。