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Composite structure of silken threads and a proteinaceous hydrogel which form the diving bell wall of the water spider Agyroneta aquatica

机译:丝线和蛋白质水凝胶的复合结构构成水蜘蛛Agyroneta aquatica的潜水钟形壁

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摘要

The unique ability of Argyroneta aquatica to form a diving bell web was re-examined using a new approach in a structurally simplified environment. The spiders generated sheet-webs from stiff, anchored threads and bundles of fine threads crossing each other, to which a hydrogel was added in several places. Due to the hydrophilic property of the web, small air bubbles could not pass this composite and remained perfectly spherical at the contact point. As revealed using Coomassie Brilliant Blue, the hydrogel and the silken threads are proteinaceous. The spider uses the web as a diving bell by transporting air bubbles to a small area underneath such a sheet-web, and by additional spinning activities. As revealed by light microscopy, the composite of threads and hydrogel is free of any meshes. In contrast, scanning electron microscopy shows only remnants of the hydrogel.
机译:在结构简化的环境中,使用一种新方法重新检查了水银龙虾形成潜水钟形网的独特能力。蜘蛛通过相互交叉的坚硬,锚定的线和细线束生成薄板网,并在多个位置添加了水凝胶。由于纤维网的亲水性,小气泡无法通过该复合材料,并在接触点处保持完美球形。如使用考马斯亮蓝显示的那样,水凝胶和丝线是蛋白质。蜘蛛通过将气泡传送到此类薄板网下面的小区域并进行额外的纺纱活动,将其用作潜水钟。如光学显微镜所揭示的,线和水凝胶的复合材料没有任何网眼。相反,扫描电子显微镜仅显示了水凝胶的残留物。

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