古生代古翅目(昆虫纲)的飞行适应。

R J Wootton, J Kukalová-Peck
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引用次数: 44

摘要

本文综述了形态学特征在解释化石昆虫飞行中的应用,并将其应用于解释古生代古翼目昆虫的飞行性能和飞行技术。估计了翼载荷和翼胸质量/总质量比,推导了翼长比和形状描述符,并讨论了翼特征的功能意义。石炭纪和二叠纪蜉蝣类(“蜉蝣”)在形态和推测的飞行能力上与现代形式存在重大差异,而古生代的齿状体(“蜻蜓”)则表现出对空中捕食的早期适应,捕食各种大小的猎物,在形状和翅膀设计上与现代蜻蜓和豆豆蝇非常相似,但缺乏一些与性能相关的结构改进。在古生代生态学的背景下,研究并讨论了钩翅目古翅目、大翅目、透翅目和透翅目在形态和飞行技术上的广泛适应辐射。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flight adaptations in Palaeozoic Palaeoptera (Insecta).

The use of available morphological characters in the interpretation of the flight of insects known only as fossils is reviewed, and the principles are then applied to elucidating the flight performance and techniques of Palaeozoic palaeopterous insects. Wing-loadings and pterothorax mass/total mass ratios are estimated and aspect ratios and shape-descriptors are derived for a selection of species, and the functional significance of wing characters discussed. Carboniferous and Permian ephemeropteroids ('mayflies') show major differences from modern forms in morphology and presumed flight ability, whereas Palaeozoic odonatoids ('dragonflies') show early adaptation to aerial predation on a wide size-range of prey, closely paralleling modern dragonflies and damselflies in shape and wing design but lacking some performance-related structural refinements. The extensive adaptive radiation in form and flight technique in the haustellate orders Palaeodictyoptera, Megasecoptera, Diaphanopterodea and Permothemistida is examined and discussed in the context of Palaeozoic ecology.

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