Sub-cell scale features govern the placement of new cells by honeybees during comb construction.

Vincent Gallo, Alice D Bridges, Joseph L Woodgate, Lars Chittka
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引用次数: 2

Abstract

Honeybee comb architecture and the manner of its construction have long been the subject of scientific curiosity. Comb is characterised by an even hexagonal layout and the sharing of cell bases and side walls, which provides maximised storage volume while requiring minimal wax. The efficiency of this structure relies on a regular layout and the correct positioning of cells relative to each other, with each new cell placed at the junction of two previously constructed cells. This task is complicated by the incomplete nature of cells at the edge of comb, where new cells are to be built. We presented bees with wax stimuli comprising shallow depressions and protuberances in simulation of features found within partially formed comb, and demonstrated that construction work by honeybee builders was influenced by these stimuli. The building of new cells was aligned to concave stimuli that simulated the clefts that naturally appear between two partially formed cells, revealing how new cells may be aligned to ensure proper tessellation within comb. We also found that bees built cell walls in response to edges formed by our stimuli, suggesting that cell and wall construction was specifically directed towards the locations necessary for continuation of hexagonal comb.

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在蜂巢建造过程中,亚细胞尺度特征决定了蜜蜂新细胞的位置。
长期以来,蜜蜂的蜂巢结构及其构造方式一直是科学界好奇的主题。梳子的特点是均匀的六角形布局,共用蜂窝基座和侧壁,这提供了最大的存储体积,同时需要最少的蜡。这种结构的效率依赖于一个规则的布局和细胞之间相对的正确位置,每个新细胞被放置在两个先前构建的细胞的连接处。由于梳子边缘细胞的不完整性质,这项任务变得复杂,而梳子边缘正是要构建新细胞的地方。我们向蜜蜂提供了蜡刺激,其中包括浅凹陷和突起,以模拟在部分形成的蜂巢内发现的特征,并证明蜜蜂建造者的施工工作受到这些刺激的影响。新细胞的构建与凹形刺激对齐,模拟了两个部分形成的细胞之间自然出现的裂缝,揭示了新细胞如何对齐以确保梳子内适当的镶嵌。我们还发现,蜜蜂会根据我们的刺激形成的边缘来构建细胞壁,这表明细胞和细胞壁的构建是专门针对六边形梳子延续所必需的位置的。
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来源期刊
CiteScore
4.80
自引率
14.30%
发文量
67
审稿时长
1 months
期刊介绍: The Journal of Comparative Physiology A welcomes original articles, short reviews, and short communications in the following fields: - Neurobiology and neuroethology - Sensory physiology and ecology - Physiological and hormonal basis of behavior - Communication, orientation, and locomotion - Functional imaging and neuroanatomy Contributions should add to our understanding of mechanisms and not be purely descriptive. The level of organization addressed may be organismic, cellular, or molecular. Colour figures are free in print and online.
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