Njoroge A W, Mankin R W, Smith B W, Baributsa D
Department of Entomology, Purdue University.
United States Department of Agriculture, Agricultural Research Service Center for Medical, Agricultural and Veterinary Entomology.
J Econ Entomol. 2017 Dec 5;110(6):2707-2715. doi: 10.1093/jee/tox260.
Hermetic storage is of interest to farmers and warehouse managers as a method to control insect pests in small storage facilities. To develop improved understanding of effects of hermetic storage on insect pest activity and mortality over time, oxygen levels, acoustic signals, and observations of visual movement were recorded from replicates of 25, 50, and 100 adult Sitophilus oryzae (L.) (Coleoptera: Curculionidae) hermetically sealed in 500- and 1,000-ml glass jars. Recordings were done for 28 d; twice daily for the first 6 d and twice weekly thereafter. Insect sounds were analyzed as short bursts (trains) of impulses with spectra that matched average spectra (profiles) of previously verified insect sound impulses. Oxygen consumption was highest in treatments of 100 insects/500-ml jar and lowest in 25/1000-ml jars. The rates of bursts per insect, number of impulses per burst, and rates of burst impulses per insect decreased as the residual oxygen levels decreased in each treatment. Activity rates <0.02 bursts s-1, the acoustic detection threshold, typically occurred as oxygen fell below 5%. Mortality was observed at 2% levels. The time to obtain these levels of insect activity and oxygen depletion ranged from 3-14 d depending on initial infestation levels. Acoustic detection made it possible to estimate the duration required for reduction of insect activity to levels resulting in negligible damage to the stored product under hermetic conditions. Such information is of value to farmers and warehouse managers attempting to reduce pest damage in stored crops.
气密储存作为一种控制小型储存设施中害虫的方法,受到农民和仓库管理人员的关注。为了更好地理解气密储存对害虫活动和死亡率随时间的影响,对密封在500毫升和1000毫升玻璃瓶中的25只、50只和100只成年米象(鞘翅目:象甲科)的重复样本记录了氧气水平、声学信号和视觉运动观察情况。记录持续28天;前6天每天记录两次,此后每周记录两次。昆虫声音被分析为短脉冲串(序列),其频谱与先前验证的昆虫声音脉冲的平均频谱(轮廓)相匹配。氧气消耗量在100只昆虫/500毫升玻璃瓶的处理中最高,在25只/1000毫升玻璃瓶的处理中最低。随着各处理中残余氧气水平的降低,每只昆虫的脉冲串速率、每个脉冲串的脉冲数以及每只昆虫的脉冲串脉冲速率均下降。活动速率<0.02脉冲串·秒⁻¹(声学检测阈值)通常在氧气降至5%以下时出现。在氧气水平为2%时观察到死亡率。达到这些害虫活动水平和氧气消耗水平所需的时间为3至14天,具体取决于初始侵染水平。声学检测使得能够估计在气密条件下将害虫活动降低到对储存产品造成可忽略不计损害的水平所需的持续时间。这些信息对于试图减少储存作物中害虫损害的农民和仓库管理人员具有价值。