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Foraging strategy of wasps – optimisation of intake rate or energetic efficiency?

机译:黄蜂的觅食策略–摄入率或能量效率的优化?

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摘要

In endothermic wasps, foraging is an expensive activity. To maximise the benefit for the colony, wasps can optimise either the intake rate or energetic efficiency of a foraging trip. We investigated the foraging behaviour of vespine wasps under variable environmental and reward conditions. We trained them to forage for 0.5 mol l–1 sucrose solution from an artificial flower in a flow-through respiratory measurement chamber, and simultaneously measured their body temperature using infrared thermography to investigate interactions between thermoregulation and energetics. Measurement of carbon dioxide release (for energetic calculations) and load mass enabled the direct determination of foraging efficiency. An unlimited reward increased the wasps’ energetic effort to increase the suction speed through high body temperatures. With reduced reward (limited flow), when an increased body temperature could not increase suction speed, the wasps decreased their body temperature to reduce the metabolic effort. Solar heat gain was used differently, either to increase body temperature without additional metabolic effort or to save energy. The foraging efficiency was mainly determined by the flow rate, ambient temperature and solar heat gain. In shade, an unlimited sucrose flow and a high ambient temperature yielded the highest energetic benefit. A limited flow reduced foraging efficiency in the shade, but only partly in sunshine. Solar radiation boosted the efficiency at all reward rates. Wasps responded flexibly to varying reward conditions by maximising intake rate at unlimited flow and switching to the optimisation of foraging efficiency when the intake rate could not be enhanced due to a limited flow rate.
机译:在吸热黄蜂中,觅食是一项昂贵的活动。为了最大程度地提高殖民地的利益,黄蜂可以优化觅食之旅的摄取率或精力充沛的效率。我们调查了在变化的环境和报酬条件下黄蜂的觅食行为。我们训练他们在流通的呼吸测量室中从人造花中觅食0.5 mol l –1 蔗糖溶液,并同时使用红外热像仪测量它们的体温,以研究温度调节和能量学之间的相互作用。通过测量二氧化碳释放量(用于能量计算)和负载质量,可以直接确定觅食效率。无限的奖励增加了黄蜂为提高体温而增加吸气速度的精力。随着奖励减少(流量受限),当体温升高无法提高吸气速度时,黄蜂降低体温以减少新陈代谢。太阳热量获取的使用方式有所不同,既可以提高体温,又不需要额外的代谢努力,也可以节省能量。觅食效率主要取决于流量,环境温度和太阳热能获取。在阴凉处,无限的蔗糖流量和较高的环境温度产生了最高的能量效益。有限的流量会降低树荫下的觅食效率,但只能部分减少阳光。在所有奖励率下,太阳辐射都能提高效率。黄蜂通过在无限制流量时最大程度地提高采食率,并在由于流量受限而无法提高采食率时切换到觅食效率的优化方面,对变化的奖励条件做出了灵活的反应。

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