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Microclimate Temperatures Impact Nesting Preference in Megachile rotundata (Hymenoptera: Megachilidae)

机译:小气候温度影响大叶轮蛾的筑巢偏好(膜翅目:大叶蝶科)

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摘要

The temperature of the nest influences fitness in cavity-nesting bees. Females may choose nest cavities that mitigate their offspring’s exposure to stressful temperatures. This study aims to understand how cavity temperature impacts the nesting preference of the solitary bee (Fabricius) under field conditions. We designed and 3D printed nest boxes that measured the temperatures of 432 cavities. Nest boxes were four-sided with cavity entrances facing northeast, northwest, southeast, and southwest. Nest boxes were placed along an alfalfa field in Fargo, ND and were observed daily for completed nests. Our study found that cavity temperature varied by direction the cavity faced and by the position of the cavity within the nest box. The southwest sides recorded the highest maximum temperatures while the northeast sides recorded the lowest maximum temperatures. Nesting females filled cavities on the north-facing sides faster than cavities on the south-facing sides. The bees preferred to nest in cavities with lower average temperatures during foraging hours, and cavities that faced to the north. The direction the cavity faced was associated with the number of offspring per nest. The southwest-facing cavities had fewer offspring than nests on the northeast side. Our study indicates that the nesting box acts as a microclimate, with temperature varying by position and direction of the cavity. Variation in cavity temperature affected where females chose to nest, but not their reproductive investment.
机译:巢的温度会影响巢状蜂的适应性。雌性可能选择巢腔来减轻其后代承受的压力。这项研究旨在了解在田间条件下腔温度如何影响单蜂(Fabricius)的筑巢偏好。我们设计了3D打印的巢箱,并测量了432个模腔的温度。巢箱是四面的,空腔入口朝向东北,西北,东南和西南。将巢箱沿着北达科他州法戈的苜蓿田地放置,每天观察完整巢穴的情况。我们的研究发现,模腔温度随模腔朝向和模腔在巢箱中的位置而变化。西南边记录最高温度,而东北边记录最低温度。筑巢的雌性在朝北的一侧填充空洞的速度比朝南的一侧填充空洞的速度快。蜜蜂更喜欢在觅食期间在平均温度较低的洞中筑巢,并将其朝向北方。腔面对的方向与每个巢的后代数量有关。面向西南的空洞的后代少于东北侧的巢。我们的研究表明,嵌套盒充当微气候,温度随腔的位置和方向而变化。腔温度的变化会影响雌性选择筑巢的地方,但不会影响其生殖投资。

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