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Proc Biol Sci. 2017 Jul 26;284(1859). doi: 10.1098/rspb.2017.1124.
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本文引用的文献

1
Three-dimensional printing spiders: back-and-forth glue application yields silk anchorages with high pull-off resistance under varying loading situations.三维打印蜘蛛:来回涂抹胶水可在不同加载情况下产生具有高抗拔力的丝锚固件。
J R Soc Interface. 2017 Feb;14(127). doi: 10.1098/rsif.2016.0783.
2
Spider's super-glue: thread anchors are composite adhesives with synergistic hierarchical organization.蜘蛛的超级胶水:丝线锚定物是具有协同分层结构的复合粘合剂。
Soft Matter. 2015 Mar 28;11(12):2394-403. doi: 10.1039/c4sm02130d.
3
Adhesive foot pads: an adaptation to climbing? An ecological survey in hunting spiders.粘性脚垫:对攀爬的一种适应?狩猎蜘蛛的生态调查
Zoology (Jena). 2015 Feb;118(1):1-7. doi: 10.1016/j.zool.2014.04.006. Epub 2014 Aug 2.
4
Composition and substrate-dependent strength of the silken attachment discs in spiders.蜘蛛丝质附着盘的组成与底物依赖性强度
J R Soc Interface. 2014 Sep 6;11(98):20140477. doi: 10.1098/rsif.2014.0477.
5
The great silk alternative: multiple co-evolution of web loss and sticky hairs in spiders.伟大的丝绸替代品:蜘蛛的蛛丝丢失和粘性毛发的多次共同进化。
PLoS One. 2013 May 1;8(5):e62682. doi: 10.1371/journal.pone.0062682. Print 2013.
6
Biomaterial evolution parallels behavioral innovation in the origin of orb-like spider webs.生物材料的进化与蛛形纲动物起源中类似球体的蛛网的行为创新是并行的。
Sci Rep. 2012;2:833. doi: 10.1038/srep00833. Epub 2012 Nov 12.
7
Cobweb-weaving spiders produce different attachment discs for locomotion and prey capture.结网蜘蛛为了运动和捕食猎物而产生不同的附肢盘。
Nat Commun. 2012;3:1106. doi: 10.1038/ncomms2099.
8
NIH Image to ImageJ: 25 years of image analysis.NIH 图像到 ImageJ:25 年的图像分析。
Nat Methods. 2012 Jul;9(7):671-5. doi: 10.1038/nmeth.2089.
9
Methods for cell and particle tracking.细胞和粒子追踪方法。
Methods Enzymol. 2012;504:183-200. doi: 10.1016/B978-0-12-391857-4.00009-4.
10
Surface roughness effects on attachment ability of the spider Philodromus dispar (Araneae, Philodromidae).表面粗糙度对蜘蛛 Philodromus dispar(蜘蛛目, Philodromidae 科)附着能力的影响。
J Exp Biol. 2012 Jan 1;215(Pt 1):179-84. doi: 10.1242/jeb.061507.

不同的旋转模式使具有不同生态习性的蜘蛛的丝线锚定具有不同的负载耐受性。

Distinct spinning patterns gain differentiated loading tolerance of silk thread anchorages in spiders with different ecology.

作者信息

Wolff Jonas O, van der Meijden Arie, Herberstein Marie E

机构信息

Behavioural Ecology, Department of Biological Sciences, Macquarie University, Sydney, New South Wales 2109, Australia

CIBIO Research Centre in Biodiversity and Genetic Resources, InBIO, Universidade do Porto, Campus Agrário de Vairão, Rua Padre Armando Quintas, No. 7, 4485-661 Vairão, Vila do Conde, Portugal.

出版信息

Proc Biol Sci. 2017 Jul 26;284(1859). doi: 10.1098/rspb.2017.1124.

DOI:10.1098/rspb.2017.1124
PMID:28724739
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5543232/
Abstract

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.

摘要

动物的筑造行为将生物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。与动物建筑相关的结构附着物提供了尚未实现的研究机会。蜘蛛用丝纤维构建各种一维到三维的结构。作为蜘蛛生态成功关键的经济蛛网形状的进化与高性能蛛丝和丝线涂层胶水的出现有关。然而,在这些模型中,丝线固定的作用一直被广泛忽视。在这里,我们表明圆蛛科(Araneidae)和猎蛛科(Sparassidae)使用不同的丝应用模式,这些模式决定了丝线固定处关节的结构和坚固性。圆蛛科蜘蛛的丝固定对不同的负载情况表现出更大的坚固性,而猎蛛科蜘蛛的丝固定在沿着拖丝纺丝方向平行于基质加载时具有最高的抗拔阻力。这表明,将丝“印”在附着盘上的行为以及纺丝器形态是在三维空间中扩展丝使用进化的先决条件。这突出了附着物在动物建筑进化中的生态作用。