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Innate olfactory preferences for flowers matching proboscis length ensure optimal energy gain in a hawkmoth

机译:与长鼻长相匹配的花朵的先天嗅觉偏好确保了天蛾的最佳能量获取

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摘要

Cost efficient foraging is of especial importance for animals like hawkmoths or hummingbirds that are feeding ‘on the wing', making their foraging energetically demanding. The economic decisions made by these animals have a strong influence on the plants they pollinate and floral volatiles are often guiding these decisions. Here we show that the hawkmoth Manduca sexta exhibits an innate preference for volatiles of those Nicotiana flowers, which match the length of the moth's proboscis. This preference becomes apparent already at the initial inflight encounter, with the odour plume. Free-flight respiration analyses combined with nectar calorimetry revealed a significant caloric gain per invested flight energy only for preferred—matching—flowers. Our data therefore support Darwin's initial hypothesis on the coevolution of flower length and moth proboscis. We demonstrate that this interaction is mediated by an adaptive and hardwired olfactory preference of the moth for flowers offering the highest net-energy reward.
机译:具成本效益的觅食对像“飞蛾”或蜂鸟这样在“机翼”上觅食的动物特别重要,这使它们的觅食极度需求。这些动物做出的经济决定对它们授粉的植物有很大的影响,而花卉挥发物通常指导着这些决定。在这里,我们表明,天蛾对天蛾的长发具有天生的偏好,这些天蛾对那些烟草花的挥发物非常满意。这种偏好在飞机初次接触时就已经很明显了,并带有气味。自由飞行呼吸分析与花蜜量热法的结合表明,仅对于首选(相配)的花朵,每投资飞行能量就有显着的热量增加。因此,我们的数据支持达尔文关于花长和蛾长鼻共同进化的最初假设。我们证明了这种相互作用是通过对飞蛾对花提供最高的净能量奖励的花的适应性和硬连线的嗅觉偏好而介导的。

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