Muratore I B, Fandozzi E M, Traniello J F A
Department of Biology, Boston University, Boston, MA, 02215, USA.
Graduate Program in Neuroscience, Boston University, Boston, MA, 02215, USA.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2022 Mar;208(2):325-344. doi: 10.1007/s00359-021-01539-6. Epub 2022 Feb 3.
Brain evolution is hypothesized to be driven by behavioral selection on neuroarchitecture. We developed a novel metric of relative neuroanatomical investments involved in performing tasks varying in sensorimotor and processing demands across polymorphic task-specialized workers of the leafcutter ant Atta cephalotes and quantified brain size and structure to examine their correlation with our computational approximations. Investment in multisensory and motor integration for task performance was estimated to be greatest for media workers, whose highly diverse repertoire includes leaf-quality discrimination and leaf-harvesting tasks that likely involve demanding sensory and motor processes. Confocal imaging revealed that absolute brain volume increased with worker size and functionally specialized compartmental scaling differed among workers. The mushroom bodies, centers of sensory integration and learning and memory, and the antennal lobes, olfactory input sites, were larger in medias than in minims (gardeners) and significantly larger than in majors ("soldiers"), both of which had lower scores for involvement of olfactory processing in the performance of their characteristic tasks. Minims had a proportionally larger central complex compared to other workers. These results support the hypothesis that variation in task performance influences selection for mosaic brain structure, the independent evolution of proportions of the brain composed of different neuropils.
大脑进化被假设为由对神经结构的行为选择所驱动。我们开发了一种新的指标,用于衡量参与执行不同感觉运动和处理需求任务的相对神经解剖学投入,这些任务涵盖了切叶蚁Atta cephalotes多态性任务专业化工蚁。我们量化了大脑大小和结构,以检验它们与我们的计算近似值之间的相关性。据估计,从事多种感官和运动整合以完成任务的投入,对于中级工蚁来说最大,它们高度多样的技能包括叶片质量辨别和叶片采集任务,这些任务可能涉及要求较高的感官和运动过程。共聚焦成像显示,绝对脑容量随着工蚁体型增大而增加,且功能特化的分区缩放比例在不同工蚁之间存在差异。蘑菇体是感觉整合以及学习和记忆的中心,触角叶是嗅觉输入位点,中级工蚁的这些结构比最小工蚁(园丁蚁)更大,并且显著大于大型工蚁(“士兵蚁”),后两者在其特征性任务表现中嗅觉处理的参与度得分较低。与其他工蚁相比,最小工蚁的中央复合体比例更大。这些结果支持了这样一种假设,即任务表现的差异会影响对镶嵌式脑结构的选择,也就是由不同神经纤维网组成的大脑各部分比例的独立进化。