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The evolution of nestmate recognition in Apidae.

机译:Apidae中巢状体识别的演变。

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摘要

This dissertation addresses a major question in evolutionary biology: how do complex recognitive systems evolve? Using nestmate recognition in the highly eusocial bees as a model system, I took a two-pronged approach to answer a piece of this broad evolutionary puzzle. First, I used behavioral experiments to test for nestmate recognition in species of eusocial bees for which this has not been examined. I also investigated the identity of the chemical cues used by these species to make recognitive decisions. I found that the Neotropical stingless bee, Trigona fulviventris, displays nestmate recognition in behavioral bioassays and uses many of the same cues that the western honeybee, Apis mellifera, uses to make nestmate discriminations. In contrast, I found that the Asian honeybee species, A. cerana, A. florea, A. andreniformis and A. dorsata do not display nestmate recognition when tested with the same behavioral bioassays.; Then, because some of the cues that eusocial bees use for nestmate recognition are acquired from exposure to beeswax, I used analytical mechanical and thermal tests to examine the role of these substances in the wax. Although beeswax has been used as a material by people for myriad purposes, surprisingly little is known about its mechanical and thermal properties. Many of my results on the quantitative behavior of beeswax are here reported for the first time. I found that the fatty acids honeybees use to discriminate nestmates from non-nestmates also serve as strengtheners and stiffeners in beeswax. Additionally, using modern quantitative techniques I found that the thermal properties of bee waxes are more complex than originally reported, that melting properties vary between but not within tribes, and that the onset of melting is lower than previously published and just higher than ambient nest temperatures.; In combination, these two approaches highlight similarities and differences among species of eusocial bees to answer some of the major questions about the evolution of nestmate recognition in this group.
机译:本文解决了进化生物学中的一个主要问题:复杂的识别系统如何进化?在高度亲和力的蜜蜂中,以巢状体识别为模型系统,我采取了两管齐下的方法来回答这一广泛的进化难题。首先,我使用行为实验来测试在未进行过亲和力的蜂类中的巢式识别。我还研究了这些物种用来做出识别性决定的化学线索的身份。我发现新热带无刺蜂Trigona fulviventris在行为生物测定法中显示出巢友识别,并使用了与西方蜜蜂Apis mellifera相同的许多线索来进行巢友判别。相比之下,我发现在使用相同的行为生物测定法进行测试时,亚洲蜜蜂物种,中华蜜蜂,弗洛里亚A. andreniformis和多毛蜜蜂A. dorsata不会显示巢状识别。然后,因为从暴露于蜂蜡中获得了常社会蜜蜂用于巢伙伴识别的某些线索,所以我使用了分析性机械和热学测试来检验这些物质在蜡中的作用。尽管蜂蜡已被人们用作多种用途的材料,但令人惊讶的是,它的机械和热学性能知之甚少。我关于蜂蜡定量行为的许多结果首次在此报道。我发现蜜蜂用来区分巢穴和非巢穴的脂肪酸也可以作为蜂蜡的增强剂和增强剂。此外,使用现代定量技术,我发现蜂蜡的热特性比最初报道的要复杂,各部落之间的融化特性有所不同,但部落之间没有变化,融化的开始温度低于先前公布的温度,仅高于巢穴环境温度。 。;结合起来,这两种方法突出了真社会蜜蜂物种之间的相似性和差异,以回答有关该组内巢识别的演变的一些主要问题。

著录项

  • 作者

    Buchwald, Robert.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Biology Entomology.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 172 p.
  • 总页数 172
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 昆虫学;
  • 关键词

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