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Colony-Level Differences in the Scaling Rules Governing Wood Ant Compound Eye Structure

机译:控制木蚂蚁复眼结构的缩放规则中的菌落水平差异

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摘要

Differential organ growth during development is essential for adults to maintain the correct proportions and achieve their characteristic shape. Organs scale with body size, a process known as allometry that has been studied extensively in a range of organisms. Such scaling rules, typically studied from a limited sample, are assumed to apply to all members of a population and/or species. Here we study scaling in the compound eyes of workers of the wood ant, Formica rufa, from different colonies within a single population. Workers’ eye area increased with body size in all the colonies showing a negative allometry. However, both the slope and intercept of some allometric scaling relationships differed significantly among colonies. Moreover, though mean facet diameter and facet number increased with body size, some colonies primarily increased facet number whereas others increased facet diameter, showing that the cellular level processes underlying organ scaling differed among colonies. Thus, the rules that govern scaling at the organ and cellular levels can differ even within a single population.
机译:发育期间的器官差异生长对于成年人保持正确的比例并达到其特征性身材至关重要。器官随身体大小而变化,这一过程被称为异构法,已在多种生物中进行了广泛研究。通常从有限样本中研究的此类缩放规则适用于种群和/或物种的所有成员。在这里,我们研究了来自单个种群内不同殖民地的木蚂蚁Formica rufa的复眼的缩放。在所有菌落中,工人的视线面积均随体型增加而呈负向异形。但是,某些异形缩放比例关系的斜率和截距在菌落之间存在显着差异。此外,尽管平均刻面直径和刻面数量随体型的增加而增加,但某些菌落主要增加了刻面数量,而另一些菌落则增加了刻面直径,这表明潜在的器官缩放的细胞水平过程在菌落之间有所不同。因此,即使在单个人群中,控制器官和细胞水平缩放的规则也可能不同。

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