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舞毒蛾黑卵蜂(膜翅目:姬蜂科)飞行性能随龄期、温度和相对湿度的变化。

Flight mill performance of the lacewing Chrysoperla sinica (Neuroptera: Chrysopidae) as a function of age, temperature, and relative humidity.

机构信息

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, People's Republic of China.

出版信息

J Econ Entomol. 2011 Feb;104(1):94-100. doi: 10.1603/ec10331.

Abstract

The lacewing Chrysoperla sinica (Tjeder) (Neuroptera: Chrysopidae) is an important predator of several insect pests in China and has considerable potential as a biological control agent. An inoculative approach would be the releasing adults early in the season to ensure that populations are present before pest densities increase. However, an understanding of adult flight activity under different conditions is necessary to develop appropriate release strategies. Therefore, we used a 32-channel, computer-monitored flight mill system to determine the effect of age on the flight activity of unmated female and male adults. Both sexes had high total flight activity levels as well as the longest individual flight bouts 2 and 3 d after emergence. The effects of temperature (between 13 and 33 degrees C at 75% RH) and relative humidity (between 30 and 90% RH at 23 degrees C) on the flight activity of 3-d-old unmated adults also were determined. Flight activity declined at the lowest (13 degrees C) and highest (33 degrees C) temperatures tested, as well as at the lowest relative humidity (30% RH). These findings are discussed within the context of selecting the appropriate environmental conditions for releasing C. sinica.

摘要

草蛉 Chrysoperla sinica(Tjeder)(Neuroptera:Chrysopidae)是中国几种害虫的重要捕食者,具有作为生物防治剂的相当大的潜力。接种方法是在季节早期释放成虫,以确保在害虫密度增加之前存在种群。但是,为了制定适当的释放策略,有必要了解在不同条件下成虫的飞行活动。因此,我们使用 32 通道,计算机监控的飞行磨系统来确定年龄对未交配的雌性和雄性成虫飞行活动的影响。雌雄两性的总飞行活动水平都很高,并且在出现后 2 和 3 天的个体飞行时间最长。还确定了温度(75%RH 下为 13 至 33 摄氏度)和相对湿度(23 摄氏度下为 30 至 90%RH)对 3 天龄未交配成虫飞行活动的影响。在测试的最低(13°C)和最高(33°C)温度以及最低相对湿度(30%RH)下,飞行活动下降。在选择释放 C. sinica 的合适环境条件的背景下讨论了这些发现。

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