Sex pheromone mimicry in the early spider orchid (ophrys sphegodes): patterns of hydrocarbons as the key mechanism for pollination by sexual deception.

F P Schiestl, M Ayasse, H F Paulus, C Löfstedt, B S Hansson, F Ibarra, W Francke
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引用次数: 177

Abstract

We investigated the female-produced sex pheromone of the solitary bee Andrena nigroaenea and compared it with floral scent of the sexually deceptive orchid Ophrys sphegodes which is pollinated by Andrena nigroaenea males. We identified physiologically and behaviorally active compounds by gas chromatography with electroantennographic detection, gas chromatography-mass spectrometry, and behavioral tests in the field. Dummies scented with cuticle extracts of virgin females or of O. sphegodes labellum extracts elicited significantly more male reactions than odorless dummies. Therefore, copulation behavior eliciting semiochemicals are located on the surface of the females' cuticle and the surface of the flowers. Within bee and orchid samples, n-alkanes and n-alkenes, aldehydes, esters, all-trans-farnesol and all-trans-farnesyl hexanoate triggered electroantennographic responses in male antennae. Most of the alkanes and alkenes occurred in similar patterns both in the bees and orchids. O. sphegodes leaf extracts contained mostly the same compounds but in different proportions. In behavioral tests with synthetic compounds, blends of alkenes triggered significantly more approaches and pounces of the males whereas alkanes were not more attractive than odorless dummies. Since alkanes and alkenes together were most attractive, we conclude they constitute the bees' sex pheromone as well as the pseudocopulation-behavior releasing orchid-odor bouquet.

早期蜘蛛兰(ophrys sphegodes)的性信息素模仿:碳氢化合物的模式作为性欺骗授粉的关键机制。
研究了黑衣Andrena nigroaenea雌蜂产生的性信息素,并将其与由黑衣Andrena nigroaenea雄蜂传粉的性欺骗兰花Ophrys sphegodes的花香进行了比较。我们通过气相色谱与天线电图检测、气相色谱-质谱联用以及现场行为测试来鉴定生理和行为活性化合物。与没有气味的假人相比,带有处女雌性或O. sphegodes唇瓣提取物角质层提取物气味的假人引起了更多的雄性反应。因此,引起交配行为的化学物质主要分布在雌花角质层表面和花表面。在蜜蜂和兰花样本中,正烷烃和正烯烃、醛类、酯类、全反式法尼醇和全反式法尼醇己酸酯在雄性触角中引发了触角电反应。大多数烷烃和烯烃在蜜蜂和兰花中都以相似的模式出现。水蛭叶提取物所含化合物基本相同,但比例不同。在用合成化合物进行的行为测试中,烯烃混合物明显地引发了更多的雄性接近和扑向,而烷烃并不比无味的假人更有吸引力。由于烷烃和烯烃在一起最具吸引力,我们得出结论,它们构成了蜜蜂的性信息素以及释放兰花气味的伪种群行为。
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