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Phenotypic Plasticity of Nest-Mate Recognition Cues in Formica exsecta Ants

机译:中华绒螯蟹巢伴侣识别线索的表型可塑性

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摘要

It is well established that many ant species have evolved qualitatively distinct species-specific chemical profile that are stable over large geographical distances. Within these species profiles quantitative variations in the chemical profile allows distinct colony-specific odours to arise (chemotypes) that are shared by all colony members. This help maintains social cohesion, including defence of their colonies against all intruders, including con-specifics. How these colony -level chemotypes are maintained among nest-mates has long been debated. The two main theories are; each ant is able to biochemically adjust its chemical profile to ‘match’ that of its nest-mates and or the queen, or all nest-mates share their individually generated chemical profile via trophollaxis resulting in an average nest-mate profile. This ‘mixing’ idea is better known as the Gestalt model. Unfortunately, it has been very difficult to experimentally test these two ideas in a single experimental design. However, it is now possible using the ant Formica exsecta because the compounds used in nest-mate recognition compounds are known. We demonstrate that workers adjust their profile to ‘match’ the dominant chemical profile within that colony, hence maintaining the colony-specific chemotype and indicates that a ‘gestalt’ mechanism, i.e. profile mixing, plays no or only a minor role.
机译:公认的是,许多蚂蚁物种已进化出在质量上截然不同的物种特定化学特征,这些特征在较大的地理距离内稳定。在这些物种轮廓内,化学轮廓中的定量变化允许出现所有菌落成员共有的独特的菌落特有气味(化学型)。这有助于保持社会凝聚力,包括捍卫自己的殖民地以抵御所有入侵者,包括同名物种。长期以来,人们一直在争论如何在巢伙伴之间维持这些菌落水平的化学型。两个主要理论是:每只蚂蚁都可以生化调整其化学特征,使其“匹配”其巢伴侣和/或女王的化学特征,或者所有的巢伴侣都通过光轴共享其单独生成的化学特征,从而获得平均的巢伴侣特征。这种“混合”想法被称为格式塔模型。不幸的是,很难在单个实验设计中对这两个想法进行实验测试。但是,由于蚁巢识别化合物中使用的化合物是已知的,因此现在可以使用蚁蚁(蚁)。我们证明了工作人员调整了他们的轮廓以“匹配”该菌落内的主要化学特征,从而保持了特定菌落的化学型,并表明“格式塔”机制(即轮廓混合)只发挥很小的作用,或者只发挥很小的作用。

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