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成虫蜻蜓 Anax imperator 的口器(昆虫纲:蜻蜓目),功能形态和取食运动学。

The mouthparts of the adult dragonfly Anax imperator (Insecta: Odonata), functional morphology and feeding kinematics.

机构信息

Department of Functional Morphology and Biomechanics, Kiel University, Kiel, Germany.

出版信息

J Morphol. 2022 Sep;283(9):1163-1181. doi: 10.1002/jmor.21497. Epub 2022 Jul 31.

Abstract

Insects evolved differently specialized mouthparts. We study the mouthparts of adult Anax imperator, one of the largest odonates found in Central Europe. Like all adult dragonflies, A. imperator possesses carnivorous-type of biting-chewing mouthparts. To gain insights into the feeding process, behavior and kinematics, living specimens were filmed during feeding using synchronized high-speed videography. Additionally, the maximum angles of movement were measured using a measuring microscope and combined with data from micro-computed tomography. The resulting visualizations of the 3D-geometry of each mouthpart were used to study their anatomy and complement the existing descriptive knowledge of muscles in A. imperator to date. Furthermore, confocal laser scanning microscopy-projections allow for estimation of differences in the material composition of the mouthparts' cuticle. By combining all methods, we analyze possible functions and underlying biomechanics of each mouthpart. We also analyzed the concerted movements of the mouthparts; unique behavior of the mouthparts during feeding is active participation by the labrum and distinct movement by the maxillary laciniae. We aim to elucidate the complex movements of the mouthparts and their functioning by combining detailed information on (1) in vivo movement behavior (supplemented with physiological angle approximations), (2) movement ability provided by morphology (morphological movement angles), (3) 3D-anatomy, and (4) cuticle composition estimates.

摘要

昆虫进化出了不同特化的口器。我们研究了安纳克斯·英佩拉托(Anax imperator)成虫的口器,它是中欧发现的最大的蜻蜓之一。像所有的成年蜻蜓一样,A. imperator 拥有肉食性的咬嚼式口器。为了深入了解进食过程、行为和运动学,我们使用同步高速录像拍摄了活体标本进食时的情况。此外,还使用测量显微镜测量了最大运动角度,并将其与微计算机断层扫描数据相结合。每个口器的三维几何结构的可视化结果用于研究其解剖结构,并补充迄今对 A. imperator 中肌肉的现有描述性知识。此外,共聚焦激光扫描显微镜投影允许估计口器外骨骼的材料组成差异。通过结合所有方法,我们分析了每个口器的可能功能和潜在生物力学。我们还分析了口器的协同运动;口器在进食过程中的独特行为是上唇和上颌侧突的积极参与和明显的运动。我们旨在通过结合以下详细信息来阐明口器的复杂运动及其功能:(1)体内运动行为(辅以生理角度近似值);(2)形态提供的运动能力(形态运动角度);(3)3D 解剖结构;(4)表皮组成估计。

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