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Investment in higher order central processing regions is not constrained by brain size in social insects

机译:对高阶中央加工区的投资不受社交昆虫大脑大小的限制

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摘要

The extent to which size constrains the evolution of brain organization and the genesis of complex behaviour is a central, unanswered question in evolutionary neuroscience. Advanced cognition has long been linked to the expansion of specific brain compartments, such as the neocortex in vertebrates and the mushroom bodies in insects. Scaling constraints that limit the size of these brain regions in small animals may therefore be particularly significant to behavioural evolution. Recent findings from studies of paper wasps suggest miniaturization constrains the size of central sensory processing brain centres (mushroom body calyces) in favour of peripheral, sensory input centres (antennal and optic lobes). We tested the generality of this hypothesis in diverse eusocial hymenopteran species (ants, bees and wasps) exhibiting striking variation in body size and thus brain size. Combining multiple neuroanatomical datasets from these three taxa, we found no universal size constraint on brain organization within or among species. In fact, small-bodied ants with miniscule brains had mushroom body calyces proportionally as large as or larger than those of wasps and bees with brains orders of magnitude larger. Our comparative analyses suggest that brain organization in ants is shaped more by natural selection imposed by visual demands than intrinsic design limitations.
机译:大小在多大程度上限制了大脑组织的演化和复杂行为的产生,这是进化神经科学中一个尚未解决的核心问题。长期以来,高级认知一直与特定大脑区域的扩展有关,例如脊椎动物的新皮层和昆虫的蘑菇体。因此,限制小型动物中这些大脑区域大小的缩放约束对于行为进化可能特别重要。纸蜂研究的最新发现表明,小型化限制了中央感觉处理脑中心(蘑菇体萼)的大小,而有利于外围,感觉输入中心(肛门和视神经叶)。我们在不同的正常社会膜翅类物种(蚂蚁,蜜蜂和黄蜂)中测试了该假设的普遍性,这些物种表现出体型的显着变化,因此脑部大小也发生了显着变化。结合来自这三个分类单元的多个神经解剖学数据集,我们发现物种内部或物种之间的大脑组织没有普遍的大小限制。实际上,具有小脑的小蚂蚁的蘑菇体花萼成比例地大于或大于具有大脑大个数量级的黄蜂和蜂的蘑菇。我们的比较分析表明,蚂蚁的大脑组织更多地受到视觉需求的自然选择的影响,而不是固有的设计局限性。

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