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首页> 外文期刊>Insects >Observation of the Mating Behavior of Honey Bee (Apis mellifera L.) Queens Using Radio-Frequency Identification (RFID): Factors Influencing the Duration and Frequency of Nuptial Flights
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Observation of the Mating Behavior of Honey Bee (Apis mellifera L.) Queens Using Radio-Frequency Identification (RFID): Factors Influencing the Duration and Frequency of Nuptial Flights

机译:使用射频识别(RFID)观察蜜蜂(Apis mellifera L.)皇后区的交配行为:影响婚庆飞行的持续时间和频率的因素

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We used radio-frequency identification (RFID) to record the duration and frequency of nuptial flights of honey bee queens (Apis mellifera carnica) at two mainland mating apiaries. We investigated the effect of a number of factors on flight duration and frequency: mating apiary, number of drone colonies, queen’s age and temperature. We found significant differences between the two locations concerning the number of flights on the first three days. We also observed an effect of the ambient temperature, with queens flying less often but longer at high temperatures compared to lower temperatures. Increasing the number of drone colonies from 33 to 80 colonies had no effect on the duration or on the frequency of nuptial flights. Since our results agree well with the results of previous studies, we suggest RFID as an appropriate tool to investigate the mating behavior of honey bee queens.
机译:我们使用射频识别(RFID)记录了两个大陆交配蜂场的蜂皇后(Apis mellifera carnica)的飞行持续时间和频率。我们调查了许多因素对飞行时间和频率的影响:蜂房,交配蜂鸟的数量,女王的年龄和温度。我们发现两个地点之间在前三天的航班数量上存在显着差异。我们还观察到了环境温度的影响,与较低的温度相比,女王在高温下的飞行次数较少,但飞行时间更长。将无人机殖民地的数量从33个增加到80个,对持续飞行的时间或飞行频率没有影响。由于我们的结果与以前的研究结果非常吻合,因此我们建议将RFID作为研究蜂皇后交配行为的适当工具。

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