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Insect wing shape evolution: independent effects of migratory and mate guarding flight on dragonfly wings

机译:昆虫的翅膀形状演变:迁移和伴侣保护飞行对蜻蜓翅膀的独立影响

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摘要

Although, in some insect taxa, wing shape is remarkably invariant, the wings of Anisopteran dragonflies show considerable variation among genera. Because wing shape largely determines the high energetic costs of flight, it may be expected that interspecific differences are partly due to selection. In the present study, we examined the roles of long-distance migration and high-manoeuvrability mate guarding in shaping dragonfly wings, using a phylogeny-based comparative method, and geometric morphometrics to quantify wing shape. The results obtained show that migration affects the shape of both front and hind wings, and suggest that mate guarding behaviour may also have an effect, especially on the front wing. These effects on front wing shape are at least partly independent. Our findings are interesting when compared with the geographically widespread and ecologically diverse dipterans Acalyptratae (including the genus Drosophila). The wings in that group are similar in function and structure, but show strikingly low levels of interspecific variation.
机译:尽管在某些昆虫类群中,翅的形状明显不变,但无翅类蜻蜓的翅在属间显示出相当大的变化。由于机翼的形状在很大程度上决定了飞行的高能量成本,因此可以预期种间差异部分是由于选择。在本研究中,我们使用基于系统发育的比较方法和几何形态计量学来量化长距离迁移和高机动性配偶保护在塑造蜻蜓翅膀中的作用。获得的结果表明,迁移会影响前翼和后翼的形状,并表明队友的守卫行为也可能会产生影响,尤其是在前翼上。这些对前机翼形状的影响至少部分独立。与地理上分布广泛且生态多样的双足动物(包括果蝇属)相比,我们的发现很有趣。该组中的机翼在功能和结构上相似,但种间变异水平极低。

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