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首页> 外文期刊>Journal of Economic Entomology >Effects of Hypoxia on Acoustic Activity of Two Stored-Product Pests, Adult Emergence, and Grain Quality
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Effects of Hypoxia on Acoustic Activity of Two Stored-Product Pests, Adult Emergence, and Grain Quality

机译:缺氧对两种储存 - 产品害虫,成人出现和粮食质量的声学活性的影响

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摘要

Modified atmospheres such as hermetic storage are widely used for the control of stored grain insect pests. To improve their effectiveness, there is need to better understand insect responses to low-oxygen environments. Adult Callosobruchus maculatus F. (Coleoptera: Chrysomelidae: Bruchinae) on cowpea and Sitophilus oryzae L. (Coleoptera: Curculionidae) on wheat were exposed to hypoxia treatments consisting of 1, 3, and 5% oxygen levels for 14 d. Acoustic activity was monitored during the experiment, and insect mortality and grain quality were examined immediately after the hypoxia treatments. Adult emergence was assessed 45 d post-treatment. All three hypoxia treatments eliminated acoustic activity of both species within 4 d. There was neither insect survival for both species nor significant grain damage immediately after 14-d exposure to hypoxia treatments. No adult insects emerged 45 d post-exposure on grains maintained at 1% oxygen level for 14 d. However, at 3 and 5% oxygen levels, there were eggs on cowpea, holes in wheat, and emerging adults for both insect species 45 d post-exposure. Although insect activity ceased within 4 d when hypoxia was maintained below 5%, there is need to explore exposure beyond 14 d for 3 and 5% oxygen levels, to ensure to avoid potential adult emergence from eggs and other insect life stages post-treatments. Maintaining 3-5% hypoxia conditions for a longer duration would ensure insufficient oxygen is available for progeny development.
机译:改性气体诸如密封储存的环境广泛用于控制储存的谷物害虫。为了提高其效率,需要更好地了解昆虫对低氧环境的反应。成人Callosobruchus Maculatus F.(鞘翅目:Chrysomelidae:Bruchinae)在豇豆和SITOPHILUS ORYZAE L.(鞘翅目:Curculionidae)暴露于1,3和5%氧水平的缺氧治疗14d。在实验期间监测声学活性,并在缺氧治疗后立即检查昆虫死亡率和谷物质量。成人出苗评估了45 D后治疗。所有三种缺氧治疗都在4天内消除了两种物种的声学活性。在14-D暴露于缺氧治疗后,既没有昆虫存活也不是立即存在显着的晶粒损伤。没有成年昆虫出现45d,在1%氧水平上保持在1%的氧气水平上的45d暴露。然而,在3和5%的氧气水平下,豇豆上有鸡蛋,小麦孔,以及昆虫物种的新出现的成年人暴露后。虽然昆虫活动在4天内停止,但当缺氧维持低于5%时,需要探索超过14d的氧气水平超过14 d,以确保避免鸡蛋和其他昆虫生命阶段的潜在成人出现治疗后的潜在成虫。保持3-5%的缺氧条件较长持续时间将确保氧气不足可用于后代发育。

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