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首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >The neuroplasticity of division of labor: worker polymorphism, compound eye structure and brain organization in the leafcutter ant Atta cephalotes
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The neuroplasticity of division of labor: worker polymorphism, compound eye structure and brain organization in the leafcutter ant Atta cephalotes

机译:劳动分工的神经形态:工人多态性,复合眼结构和脑组织在杉木蚁蚂蚁ATTA头脑中

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摘要

Our understanding of how sensory structure design is coupled with neural processing capacity to adaptively support division of labor is limited. Workers of the remarkably polymorphic fungus-growing ant Atta cephalotes are behaviorally specialized by size: the smallest workers (minims) tend fungi in dark subterranean chambers while larger workers perform tasks outside the nest. Strong differences in worksite light conditions are predicted to influence sensory and processing requirements for vision. Analyzing confocal scans of worker eyes and brains, we found that eye structure and visual neuropils appear to have been selected to maximize task performance according to light availability. Minim eyes had few ommatidia, large interommatidial angles and eye parameter values, suggesting selection for visual sensitivity over acuity. Large workers had larger eyes with disproportionally more and larger ommatidia, and smaller interommatidial angles and eye parameter values, indicating peripheral sensory adaptation to ambient rainforest light. Optic lobes and mushroom body collars were disproportionately small in minims. Within the optic lobe, lamina and lobula relative volumes increased with worker size whereas medulla volume decreased. Visual system phenotypes thus correspond to task specializations in dark or light environments and illustrate a functional neuroplasticity underpinning division of labor in this socially complex agricultural ant.
机译:我们了解感觉结构设计如何与神经加工能力联合到自适应支撑划分的神经处理能力有限。显着的多态真菌生长的蚂蚁头巾的工人是由大小的行为专门的:最小的工人(最小)在黑暗的地下室倾向于真菌,而较大的工人在巢外执行任务。预计工地光线条件的强烈差异将影响视觉的感官和加工要求。分析了工人眼睛和大脑的共焦扫描,我们发现眼部结构和视觉神经潜入似乎已被选中以根据光的可用性最大限度地提高任务性能。最小的眼睛具有很少的OMMATIDIA,大的外形角度和眼睛参数值,表明对敏锐度的视觉敏感性的选择。大型工人的眼睛较大,越来越大的OMMATIDIA,以及较小的外形角度和眼睛参数值,表明周边感觉适应环境雨林光。光学裂片和蘑菇体项圈在最小的最小值中不成比例地小。在视神经叶内,椎板和叶片相对容量随着工人尺寸的增加而增加,而Medulla体积减少。因此,视觉系统表型对应于黑暗或光环境中的任务专用,并说明了在这家社会复杂的农业蚂蚁中劳动分工的功能性神经塑性。

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