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Relationship between body size and flying-related structures in Neotropical social wasps (Polistinae, Vespidae, Hymenoptera)

机译:新热带社会性黄蜂(Polistinae,Vespidae,膜翅目)的体型与飞行相关结构之间的关系

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摘要

Body size influences wing shape and associated muscles in flying animals which is a conspicuous phenomenon in insects, given their wide range in body size. Despite the significance of this, to date, no detailed study has been conducted across a group of species with similar biology allowing a look at specific relationship between body size and flying structures. Neotropical social vespids are a model group to study this problem as they are strong predators that rely heavily on flight while exhibiting a wide range in body size. In this paper we describe the variation in both wing shape, as wing planform, and mesosoma muscle size along the body size gradient of the Neotropical social wasps and discuss the potential factors affecting these changes. Analyses of 56 species were conducted using geometric morphometrics for the wings and lineal morphometrics for the body; independent contrast method regressions were used to correct for the phylogenetic effect. Smaller vespid species exhibit rounded wings, veins that are more concentrated in the proximal region, larger stigmata and the mesosoma is proportionally larger than in larger species. Meanwhile, larger species have more elongated wings, more distally extended venation, smaller stigmata and a proportionally smaller mesosoma. The differences in wing shape and other traits could be related to differences in flight demands caused by smaller and larger body sizes. Species around the extremes of body size distribution may invest more in flight muscle mass than species of intermediate sizes.
机译:体型会影响飞行中动物的翅膀形状和相关的肌肉,这是昆虫的一种明显现象,因为它们的体型范围很广。尽管具有重要意义,但迄今为止,尚未对生物学相似的一组物种进行详细的研究,从而无法研究其体型与飞行结构之间的特定关系。新热带社会小动物是研究此问题的模型组,因为它们是强大的掠食者,在很大程度上依赖于飞行,同时又表现出很大的体型。在本文中,我们描述了沿新热带社会黄蜂体形梯度分布的翼形(作为翼形体)和中胚层肌肉尺寸的变化,并讨论了影响这些变化的潜在因素。使用机翼的几何形态学和人体的线性形态学进行了56种物种的分析。独立的对比方法回归用于校正系统发育效应。较小的小孢子菌种具有圆形的翅膀,近端区域的静脉更集中,较大的柱头,而间质瘤与较大的菌种成比例地较大。同时,较大的物种具有更长的翅膀,更长的向远侧延伸的静脉,更小的柱头和成比例的更小的间皮瘤。机翼形状和其他特征的差异可能与机体尺寸越来越大引起的飞行需求差异有关。与中等身材的物种相比,身材极端分布的物种可能在飞行肌肉质量上投入更多。

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