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Nestmate recognition in the stingless bee Frieseomelitta varia (Hymenoptera, Apidae, Meliponini): sources of chemical signals

机译:无the蜜蜂Frieseomelitta varia(膜翅目,Apidae,Meliponini)中的内参识别:化学信号的来源

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摘要

Social insects use cuticular lipids for nestmate recognition. These lipids are chiefly hydrocarbons that can be endogenously produced or acquired from the environment. Although these compounds are already described as coming from different sources for different groups of social insects, nothing is known about the source of cuticular hydrocarbons in stingless bees. We used behavioural recognition tests and cuticle chemical investigation to elucidate the role of endogenous and environmentally based cues for nestmate recognition in the stingless bee Frieseomelitta varia. We found that although newly emerged workers present specific cuticle patterns according to their nest origin, these compounds are not used for nestmate recognition, since newly emerged workers are broadly accepted in different colonies. The cerumen used in nest construction played an important role in recognition behaviour. Twenty minutes of contact with foreign cerumen was sufficient to increase the rejection rates of nestmates and separate the groups of workers according to their chemical profile. On the other hand, tests of feeding on a common diet showed no effect on chemical cuticle pattern or recognition behaviour. (C) 2010 The Association for the Study of Animal Behaviour. Published by Elsevier Ltd. All rights reserved.
机译:社交昆虫使用表皮脂质进行巢状识别。这些脂质主要是可以从环境内生产生或获取的烃。尽管已将这些化合物描述为来自不同来源的不同类别的社会昆虫,但对无刺蜂中表皮碳氢化合物的来源一无所知。我们使用行为识别测试和表皮化学调查来阐明内源性和基于环境的线索在无刺蜂Frieseomelitta varia中巢式识别中的作用。我们发现,尽管新出现的工人根据其巢的起源呈现出特定的角质层模式,但这些化合物并未用于巢伙伴识别,因为新出现的工人在不同的殖民地被广泛接受。巢构造中使用的陶土在识别行为中起着重要作用。与异物的二十分钟接触足以增加巢友的排斥率,并根据工人的化学特征将其分开。另一方面,以普通饮食喂养的测试显示对化学角质层模式或识别行为没有影响。 (C)2010年动物行为研究协会。由Elsevier Ltd.出版。保留所有权利。

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