首页> 外文期刊>Chemical Senses >The Trail Pheromone of a Stingless Bee, Trigona corvina (Hymenoptera, Apidae, Meliponini), Varies between Populations
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The Trail Pheromone of a Stingless Bee, Trigona corvina (Hymenoptera, Apidae, Meliponini), Varies between Populations

机译:无刺蜜蜂Trigona corvina(膜翅目,Apidae,Meliponini)的踪迹信息素在种群之间变化。

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摘要

Stingless bees, like honeybees, live in highly organized, perennial colonies. Their eusocial way of life, which includes division of labor, implies that only a fraction of the workers leave the nest to forage for food. To ensure a sufficient food supply for all colony members, stingless bees have evolved different mechanisms to recruit workers to foraging or even to communicate the location of particular food sites. In some species, foragers deposit pheromone marks between food sources and their nest, which are used by recruited workers to locate the food. To date, pheromone compounds have only been described for 3 species. We have identified the trail pheromone of a further species by means of chemical and electrophysiological analyses and with bioassays testing natural gland extracts and synthetic compounds. The pheromone is a blend of wax type and terpene esters. The relative proportions of the single components showed significant differences in the pheromones of foragers form 3 different colonies. This is the first report on a trail pheromone comprised of esters of 2 different biogenetic origins proving variability of the system. Pheromone specificity may serve to avoid confusions between the trails deposited by foragers of different nests and, thus, to decrease competition at food sources.
机译:像蜜蜂一样,无刺蜜蜂生活在高度组织的多年生殖民地中。他们的社会主义生活方式包括分工,这意味着只有一小部分工人离开巢穴觅食。为了确保所有殖民地成员都有足够的食物供应,无刺蜂已经发展出不同的机制来招募工人进行觅食甚至传达特定食物场所的位置。在某些物种中,觅食者在食物来源和它们的巢之间沉积了信息素标记,被招募的工人用来定位食物。迄今为止,仅描述了3种信息素化合物。我们已经通过化学和电生理分析以及通过生物测定法检测天然腺体提取物和合成化合物的方法,鉴定了其他物种的尾信息素。信息素是蜡型和萜烯酯的混合物。单个成分的相对比例显示出从3个不同菌落中觅食的信息素显着不同。这是关于追踪信息素的首次报道,该信息素由2种不同生物遗传学来源的酯组成,证明了系统的可变性。信息素的特异性可以避免由不同巢穴的觅食者沉积的踪迹之间的混淆,从而减少食物来源的竞争。

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  • 来源
    《Chemical Senses》 |2010年第7期|p.593-601|共9页
  • 作者单位

    Institute for Experimental Ecology, University of Ulm, Albert-Einstein-Allee 11, 89069 Ulm, Germany;

    Institute for Experimental Ecology, University of Ulm, Albert-Einstein-Allee 11, 89069 Ulm, Germany;

    Institute for Organic Chemistry, University of Hamburg, Martin-Luther-King Platz 6, 20146 Hamburg, Germany;

    Centre for Tropical Bee Research, National University of Costa Rica, PO Box 475-3000, Heredia, Costa Rica;

    Institute for Organic Chemistry, University of Hamburg, Martin-Luther-King Platz 6, 20146 Hamburg, Germany;

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