Gronenberg Wulfia, Ash Lesley E, Tibbetts Elizabeth A
Arizona Research Laboratories, Division of Neurobiology, University of Arizona, Tucson, AZ 85721, USA.
Brain Behav Evol. 2008;71(1):1-14. doi: 10.1159/000108607. Epub 2007 Sep 20.
Unique among insects, some paper wasp species recognize conspecific facial patterns during social communication. To evaluate whether specialized brain structures are involved in this task, we measured brain and brain component size in four different paper wasp species, two of which show facial pattern recognition. These behavioral abilities were not reflected by an increase in brain size or an increase in the size of the primary visual centers (medulla, lobula). Instead, wasps showing face recognition abilities had smaller olfactory centers (antennal lobes). Although no single brain compartment explains the wasps' specialized visual abilities, multi-factorial analysis of the different brain components, particularly the antennal lobe and the mushroom body sub-compartments, clearly separates those species that show facial pattern recognition from those that do not. Thus, there appears to be some neural specialization for visual communication in Polistes. However, the apparent lack of optic lobe specialization suggests that the visual processing capabilities of paper wasps might be preadapted for pattern discrimination and the ability to discriminate facial markings could require relatively small changes in their neuronal substrate.
在昆虫中独一无二的是,一些胡蜂物种在社交交流中能够识别同种个体的面部图案。为了评估是否有专门的脑结构参与这项任务,我们测量了四种不同胡蜂物种的脑和脑组成部分的大小,其中两种表现出面部图案识别能力。这些行为能力并没有通过脑容量的增加或主要视觉中枢(髓质、小叶)大小的增加来体现。相反,表现出面部识别能力的胡蜂嗅觉中枢(触角叶)较小。虽然没有单一的脑区能够解释胡蜂的特殊视觉能力,但对不同脑组成部分,特别是触角叶和蘑菇体亚区进行多因素分析,可以清楚地将表现出面部图案识别能力的物种与不具备该能力的物种区分开来。因此,在胡蜂属中似乎存在一些用于视觉交流的神经特化现象。然而,明显缺乏视叶特化表明,胡蜂的视觉处理能力可能预先适应了图案辨别,而辨别面部斑纹的能力可能只需要其神经元基质发生相对较小的变化。