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鞘翅目甲虫对不同风速下信息素的飞行行为反应。

Flight behavior of scolytid beetle in response to semiochemicals at different wind speeds.

机构信息

Faculty of Forestry, University of British Columbia, V6T 1W5, Vancouver, British Columbia, Canada.

出版信息

J Chem Ecol. 1991 Mar;17(3):647-61. doi: 10.1007/BF00982133.

Abstract

The response of the striped ambrosia beetle,Trypodendron lineatum (Olivier) (Coleoptera: Scolytidae), to a semiochemical-baited funnel trap was studied in a wind tunnel in the first of two experiments. Wind speeds were tested over a range of 0.0-0.9 m/sec. Percent beetle capture decreased linearly with increasing wind speed within the range tested. A second experiment showed that in the presence of wind, beetles flew upwind to a semiochemical-baited substrate. In still air, they tended to fly randomly and erratically; yet in close proximity to the baited substrate, a greater proportion of the beetles were arrested in response to the chemical stimuli and landed on the substrate than when an airflow was present. These results suggest thatT. lineatum are capable of responding to semiochemicals under varied wind conditions typically present in a forest where they use wind to orient to olfactory stimuli. However, greater numbers are arrested in response to the stimuli under relatively still conditions.

摘要

在两项实验中的第一项实验中,研究了条纹粉蠹(Trypodendron lineatum (Olivier))(鞘翅目:小蠹科)对用半化学引诱剂诱捕漏斗的反应,在风洞中测试了风速范围为 0.0-0.9 m/sec。在测试范围内,被捕甲虫的百分比与风速的增加呈线性下降。第二项实验表明,在有风的情况下,甲虫会逆风飞向用半化学引诱剂处理的基质。在静止空气中,它们往往会随机和不稳定地飞行;然而,在靠近诱饵基质的地方,与存在气流时相比,更多的甲虫因化学刺激而被阻止并降落在基质上。这些结果表明,T. lineatum 在森林中通常存在的各种风况下,能够对信息素做出反应,在森林中它们利用风来定位嗅觉刺激。然而,在相对静止的条件下,更多的甲虫会因刺激而被捕。

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