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蜘蛛承重丝附着物中的塑性材料投资。

Plastic material investment in load-bearing silk attachments in spiders.

作者信息

Wolff Jonas O, Jones Braxton, Herberstein Marie E

机构信息

Behavioural Ecology, Department of Biological Sciences, Macquarie University, Sydney, NSW 2109, Australia.

Behavioural Ecology, Department of Biological Sciences, Macquarie University, Sydney, NSW 2109, Australia.

出版信息

Zoology (Jena). 2018 Dec;131:45-47. doi: 10.1016/j.zool.2018.05.002. Epub 2018 May 17.

Abstract

The nature and size of attachments is a fundamental element of animal constructions. Presumably, these adhesive structures are plastically deployed to balance material investment and attachment strength. Here we studied plasticity in dragline anchorages of the golden orb web spider, Nephila plumipes. Specifically, we predict that spiders adjust the size and structure of dragline anchorages with load, i.e. spider mass. Mass was manipulated by attaching lead pieces to the spider's abdomen resulting in a 50 percent increase in mass. Loaded spiders spun larger but structurally similar thread anchorages than unloaded spiders. Thus, the spinning program that determines the overall anchor structure is highly stereotypic, and flexibility is introduced through varying the anchor size by increasing material investment. Our study showcases substrate attachments as suitable models to investigate the interplay between innate and changeable elements in the economy of building behaviours.

摘要

附着物的性质和大小是动物建筑结构的一个基本要素。据推测,这些粘附结构会以可塑性方式部署,以平衡材料投入和附着强度。在此,我们研究了金球织网蜘蛛(Nephila plumipes)拖丝锚定结构的可塑性。具体而言,我们预测蜘蛛会根据负载(即蜘蛛体重)来调整拖丝锚定结构的大小和结构。通过在蜘蛛腹部附着铅块来改变其体重,使其体重增加了50%。与未负重的蜘蛛相比,负重的蜘蛛纺出的丝锚定结构更大,但结构相似。因此,决定整体锚定结构的纺丝程序是高度刻板的,而灵活性是通过增加材料投入来改变锚定大小而引入的。我们的研究表明,底物附着物是研究建筑行为经济性中先天要素和可变要素之间相互作用的合适模型。

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