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Chemical basis of nest-mate discrimination in the ant Formica exsecta

机译:蚁蚁的巢伴侣判别的化学基础

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摘要

Distinguishing nest-mates from non-nest-mates underlies key animal behaviours, such as territoriality, altruism and the evolution of sociality. Despite its importance, there is very little empirical support for such a mechanism in nature. Here we provide data that the nest-mate recognition mechanism in an ant is based on a colony-specific Z9-alkene signature, proving that surface chemicals are indeed used in ant nest-mate recognition as was suggested 100 years ago. We investigated the cuticular hydrocarbon profiles of 10 Formica exsecta colonies that are composed almost entirely of a Z9-alkene and alkane component. Then we showed that worker aggression is only elicited by the Z9-alkene part. This was confirmed using synthetic Z9-alkene and alkane blends matched to the individual colony profiles of the two most different chemical colonies. In both colonies, only glass beads with ‘nest-mate’ alkene profiles received reduced aggression. Finally, changing the abundance of a single Z9-alkene on live ants was shown to significantly increase the aggression they received from nest-mates in all five colonies tested. Our data suggest that nest-mate discrimination in the social insects has evolved to rely upon highly sensitive responses to relatively few compounds.
机译:将同伴与非同伴区分开来是关键动物行为的基础,例如领土,利他主义和社会进化。尽管它很重要,但实际上对于这种机制几乎没有经验支持。在这里,我们提供的数据表明,蚂蚁中的蚁巢识别机制是基于特定于菌落的Z9-烯烃签名,证明表面化学确实可用于蚂蚁巢状识别,正如100年前所建议的那样。我们调查了10个Formica exsecta菌落的表皮碳氢化合物分布,这些菌落几乎完全由Z9-烯烃和烷烃组分组成。然后,我们证明了工人的侵略性仅是由Z9-烯烃部分引起的。使用合成的Z9-烯烃和烷烃混合物与两个最不同的化学菌落的个体菌落谱相匹配,可以证实这一点。在两个殖民地中,只有具有“巢状”烯烃特征的玻璃珠的侵略性降低了。最后,研究表明,改变单个Z9烯烃在活蚂蚁上的丰度会显着提高它们在所测试的所有五个菌落中从巢伙伴那里获得的侵略性。我们的数据表明,社交昆虫中的巢伙伴歧视已经演变成对相对较少化合物的高度敏感反应。

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