首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Distinct spinning patterns gain differentiated loading tolerance of silk thread anchorages in spiders with different ecology
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Distinct spinning patterns gain differentiated loading tolerance of silk thread anchorages in spiders with different ecology

机译:不同的纺丝方式可在不同生态的蜘蛛中获得不同的丝线锚固载荷承受力

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摘要

Building behaviour in animals extends biological functions beyond bodies. Many studies have emphasized the role of behavioural programmes, physiology and extrinsic factors for the structure and function of buildings. Structure attachments associated with animal constructions offer yet unrealized research opportunities. Spiders build a variety of one- to three-dimensional structures from silk fibres. The evolution of economic web shapes as a key for ecological success in spiders has been related to the emergence of high performance silks and thread coating glues. However, the role of thread anchorages has been widely neglected in those models. Here, we show that orb-web (Araneidae) and hunting spiders (Sparassidae) use different silk application patterns that determine the structure and robustness of the joint in silk thread anchorages. Silk anchorages of orb-web spiders show a greater robustness against different loading situations, whereas the silk anchorages of hunting spiders have their highest pull-off resistance when loaded parallel to the substrate along the direction of dragline spinning. This suggests that the behavioural ‘printing' of silk into attachment discs along with spinneret morphology was a prerequisite for the evolution of extended silk use in a three-dimensional space. This highlights the ecological role of attachments in the evolution of animal architectures.
机译:动物的行为举止将生物学功能扩展到身体之外。许多研究强调了行为程序,生理学和外在因素对建筑物结构和功能的作用。与动物构造相关的结构附件提供了尚未实现的研究机会。蜘蛛利用丝纤维构建各种一维到三维结构。经济网状形状的演变是蜘蛛在生态学上取得成功的关键,这与高性能丝绸和线涂胶的出现有关。但是,在这些模型中,螺纹锚固的作用已被广泛忽略。在这里,我们显示了天花网(Araneidae)和狩猎蜘蛛(Sparasssidae)使用不同的蚕丝施用模式,这些模式决定了蚕丝锚固中关节的结构和坚固性。球形蜘蛛网的丝锚固在不同的负载情况下显示出更高的鲁棒性,而狩猎蜘蛛丝的锚固在沿拉铲丝纺丝方向平行于基材加载时具有最高的抗剥离性。这表明丝绸的行为“印刷”到喷丝头以及喷丝头形态是在三维空间中扩展丝绸使用演变的先决条件。这突显了附件在动物结构演变中的生态作用。

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