Eltz Thomas, Ayasse Manfred, Lunau Klaus
Department of Neurobiology, Sensory Ecology Group, University of Düsseldorf, Universitätsstr. 1, 40225 Düsseldorf, Germany.
J Chem Ecol. 2006 Jan;32(1):71-9. doi: 10.1007/s10886-006-9352-0. Epub 2006 Feb 26.
Male neotropical orchid bees (Euglossini) collect odoriferous substances from orchids and other sources and store them in tibial pouches, accumulating complex and species-specific bouquets. These fragrances are later exposed at display sites, presumably to attract females or conspecific males or both. We hypothesized that the necessity to detect and recognize specific fragrance bouquets has led to peripheral chemosensory specializations in different species of orchid bees. To test this, excised male antennae of four species of Euglossa were stimulated with complete tibial extracts of the same four species in a crosswise experiment. In the majority of the tested extracts, the amplitude of the electroantennogram (EAG) response was significantly different between species and always maximal in males of the extracted species. This effect did not appear to result from a given species' increased sensitivity toward certain attractive components: gas chromatography with electroantennographic detection (GC-EAD) of one extract of Euglossa tridentata evoked similar and generalized response patterns in all four species, encompassing a total of 34 peaks that elicited antennal responses. Therefore, the species effect in EAG responses to complete extracts likely resulted from species-specific interactions of compounds at the receptor level. Antennal specialization to conspecific bouquets adds additional strength to the argument that specificity is an important evolutionary aspect of euglossine tibial fragrances.
雄性新热带地区的兰花蜂(Euglossini)从兰花和其他来源收集有气味的物质,并将它们储存在胫节囊中,积累复杂且具有物种特异性的花束。这些香味随后在展示地点释放,大概是为了吸引雌性、同种雄性或两者。我们假设,检测和识别特定香味花束的必要性导致了不同种类兰花蜂的外周化学感应特化。为了验证这一点,在一项交叉实验中,用相同四个物种的完整胫节提取物刺激四种尤加属兰花蜂的离体雄性触角。在大多数测试提取物中,触角电图(EAG)反应的幅度在不同物种间存在显著差异,并且在提取物所属物种的雄性中总是最大。这种效应似乎并非源于某一特定物种对某些有吸引力成分的敏感性增加:对三叉尤加兰花蜂一种提取物进行的气相色谱 - 触角电图检测(GC - EAD)在所有四个物种中引发了相似且普遍的反应模式,共包含34个引发触角反应的峰。因此,EAG对完整提取物反应中的物种效应可能是由于化合物在受体水平上的物种特异性相互作用所致。触角对同种花束的特化进一步支持了特异性是尤加属兰花蜂胫节香味重要进化特征这一观点。