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Three-dimensional reconstruction on cell level: case study elucidates the ultrastructure of the spinning apparatus of Embia sp. (Insecta: Embioptera)

机译:在细胞水平上的三维重建:案例研究阐明了Embia sp。纺丝设备的超微结构。 (昆虫纲:Embioptera)

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摘要

Spinning is a phenomenon not only present in spiders, but also in many other arthropods. The functional morphology and complexity of spinning organs is often poorly understood. Their elements are minute and studying them poses substantial methodological difficulties. This study presents a three-dimensional reconstruction of a silk gland of Embia sp. on cellular level, based on serial sections acquired with serial block-face scanning electron microscopy (SBFSEM) to showcase the power of this method. Previous studies achieved either high resolution to elucidate the ultrastructure or satisfying three-dimensional representations. The high-resolution achieved by SBFSEM can be easily used to reconstruct the three-dimensional ultrastructural organization of cellular structures. The herein investigated spinning apparatus of Embioptera can be taken as an example demonstrating the potential of this method. It was possible to reconstruct a multinucleated silk gland containing 63 nuclei. We focused on the applicability of this method in the field of morphological research and provide a step-by-step guide to the methodology. This will help in applying the method to other arthropod taxa and will help significantly in adapting the method to other animals, animal parts and tissues.
机译:旋转现象不仅存在于蜘蛛中,而且也存在于许多其他节肢动物中。人们通常对旋转器官的功能形态和复杂性了解甚少。它们的要素微不足道,对其进行研究构成了巨大的方法论难题。这项研究提出了Embia sp。的丝腺的三维重建。在细胞水平上,基于通过串行块面扫描电子显微镜(SBFSEM)获得的串行切片来展示此方法的强大功能。先前的研究要么获得高分辨率以阐明超微结构,要么获得了令人满意的三维表示。通过SBFSEM获得的高分辨率可以轻松地用于重建细胞结构的三维超微结构。本文研究的Embioptera纺纱设备可以作为一个示例,证明该方法的潜力。可以重建包含63个核的多核丝腺。我们专注于此方法在形态学研究领域的适用性,并提供了该方法的分步指南。这将有助于将该方法应用于其他节肢动物类群,并且将大大有助于将该方法应用于其他动物,动物部位和组织。

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