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Combination of Methoprene and Controlled Aeration to Manage Insects in Stored Wheat

机译:甲基异戊二烯和控制通气相结合来管理小麦储存中的昆虫

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摘要

A commercial formulation of the insect growth regulator methoprene was applied to wheat stored in small bins either alone or in combination with controlled aeration of the bins, to lower grain temperature for insect pest management of stored wheat. Grain temperatures were monitored and modified by a computer-controlled thermocouple system that also activated the aeration system at programmed set-points to move cool ambient air through the grain mass to lower grain temperature. Results from sampling insect populations in experimental storage bins along with laboratory mortality bioassays of insects placed on wheat taken from the bins over the course of the storage period showed that methoprene was very effective in controlling infestation by the externally-feeding stored grain insects Plodia interpunctella (Hübner), the Indian meal moth Tribolium castaneum (Herbst), the red flour beetle, Cryptolestes ferrugineus (Stephens), the rusty grain beetle, and also for the internal-feeding pest Rhyzopertha dominica( Fauvel), the lesser grain borer. Methoprene did not give good control of the internal-feeding pest Sitophilus oryzae (L.), the rice weevil. Aeration alone was somewhat effective in suppressing insect population development, while methoprene alone or when combined with aeration greatly enhanced insect control. Commercial grain grading for industry quality standards at the end of the storage period confirmed the impact of insect suppression on maintaining high quality of the stored wheat. This field experiment shows that methoprene combined with aeration to cool grain can be effective for pest management of stored wheat in the southern plains of the United States of America.
机译:将昆虫生长调节剂甲氧戊二烯的商业制剂单独或与可控曝气的箱一起应用于小箱中存储的小麦,以降低谷物温度,以控制所存储小麦的害虫。谷物温度通过计算机控制的热电偶系统进行监控和修改,该系统还以设定的设定点激活了曝气系统,以使冷空气通过谷物团块移动至较低的谷物温度。在实验存储箱中对昆虫种群进行采样的结果以及在存储期间对从存储箱中取出的小麦进行的昆虫死亡率的实验室生物测定表明,甲基异戊二烯通过外部喂养存储的谷物昆虫Plodia interpunctella( Hübner),印度粉蛾Tribolium castaneum(Herbst),红色面粉甲虫,Cryptolestes ferrugineus(Stephens),生锈的谷物甲虫,还用于内部饲喂的害虫Rhyzopertha dominica(Fauvel)。甲基异戊二烯不能很好地控制稻米象鼻虫Sitophilus oryzae(L.)。单独曝气在抑制昆虫种群发展方面有些有效,而单独使用甲丁戊二烯或与曝气结合使用则大大提高了昆虫的控制能力。在储存期结束时,根据行业质量标准进行商业谷物分级,证实了抑制昆虫生长对保持小麦品质的影响。该田间试验表明,美丁二烯与通气相结合以冷却谷物对于美利坚合众国南部平原储藏小麦的病虫害管理是有效的。

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