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雄性兰花蜂在采集香水方面的嗅觉特化。

Olfactory specialization for perfume collection in male orchid bees.

作者信息

Mitko Lukasz, Weber Marjorie G, Ramirez Santiago R, Hedenström Erik, Wcislo William T, Eltz Thomas

机构信息

Department of Animal Ecology, Evolution and Biodiversity, Ruhr-Universität Bochum, Bochum 44780, Germany.

The Center for Population Biology, University of California, Davis, Davis, CA 95616, USA.

出版信息

J Exp Biol. 2016 May 15;219(Pt 10):1467-75. doi: 10.1242/jeb.136754.

Abstract

Insects rely on the olfactory system to detect a vast diversity of airborne molecules in their environment. Highly sensitive olfactory tuning is expected to evolve when detection of a particular chemical with great precision is required in the context of foraging and/or finding mates. Male neotropical orchid bees (Euglossini) collect odoriferous substances from multiple sources, store them in specialized tibial pouches and later expose them at display sites, presumably as mating signals to females. Previous analysis of tibial compounds among sympatric species revealed substantial chemical disparity in chemical composition among lineages with outstanding divergence between closely related species. Here, we tested whether specific perfume phenotypes coevolve with matching olfactory adaptations in male orchid bees to facilitate the location and harvest of species-specific perfume compounds. We conducted electroantennographic (EAG) measurements on males of 15 sympatric species in the genus Euglossa that were stimulated with 18 compounds present in variable proportions in male hind tibiae. Antennal response profiles were species-specific across all 15 species, but there was no conspicuous differentiation between closely related species. Instead, we found that the observed variation in EAG activity follows a Brownian motion model of trait evolution, where the probability of differentiation increases proportionally with lineage divergence time. However, we identified strong antennal responses for some chemicals that are present as major compounds in the perfume of the same species, thus suggesting that sensory specialization has occurred within multiple lineages. This sensory specialization was particularly apparent for semi-volatile molecules ('base note' compounds), thus supporting the idea that such compounds play an important role in chemical signaling of euglossine bees. Overall, our study found no close correspondence between antennal responses and behavioral preferences/tibial contents, but confirms the utility of EAG profiling for discovering certain behaviorally active compounds.

摘要

昆虫依靠嗅觉系统来检测其环境中种类繁多的空气传播分子。当在觅食和/或寻找配偶的背景下需要高精度检测特定化学物质时,高度敏感的嗅觉调节有望进化。新热带兰花蜂(Euglossini)雄性从多个来源收集有气味的物质,将它们储存在专门的胫节囊中,随后在展示地点展示,大概是作为向雌性发出的交配信号。先前对同域物种胫节化合物的分析表明,不同谱系之间在化学成分上存在显著的化学差异,亲缘关系密切的物种之间差异尤为突出。在这里,我们测试了特定的香水表型是否与雄性兰花蜂中匹配的嗅觉适应性共同进化,以促进对物种特异性香水化合物的定位和采集。我们对Euglossa属的15个同域物种的雄性进行了触角电图(EAG)测量,用18种在雄性后胫节中比例不同的化合物对它们进行刺激。在所有15个物种中,触角反应谱都是物种特异性的,但亲缘关系密切的物种之间没有明显的分化。相反,我们发现观察到的EAG活性变化遵循性状进化的布朗运动模型,其中分化的概率与谱系分化时间成比例增加。然而,我们确定了对某些作为同一物种香水中主要化合物存在的化学物质有强烈的触角反应,因此表明在多个谱系中已经发生了感官特化。这种感官特化对于半挥发性分子(“基调”化合物)尤为明显,从而支持了这样一种观点,即此类化合物在兰花蜂的化学信号传递中发挥着重要作用。总体而言,我们的研究发现触角反应与行为偏好/胫节含量之间没有密切对应关系,但证实了EAG分析在发现某些具有行为活性的化合物方面的实用性。

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