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园蛛糖蛋白是一种智能生物材料,能够进行反复的黏附循环。

Orb weaver glycoprotein is a smart biological material, capable of repeated adhesion cycles.

作者信息

Kelly Sean D, Opell Brent D, Owens Lindsey L

机构信息

Department of Biological Sciences, Virginia Tech, Blacksburg, VA, 24061, USA.

出版信息

Naturwissenschaften. 2019 Mar 6;106(3-4):10. doi: 10.1007/s00114-019-1607-z.

Abstract

Orb weavers produce webs that trap prey using a capture spiral formed of regularly spaced glue droplets supported by protein fibers. Each droplet consists of an outer aqueous layer and an adhesive, viscoelastic glycoprotein core. Organic and inorganic compounds in the aqueous layer make droplets hygroscopic and cause droplet features to change with environmental humidity. When droplets contact a surface, they adhere and extend as an insect struggles. Thus, a droplet's extensibility is as important for prey capture as its adhesion. Cursory observations show that droplets can adhere, extend, and pull off from a surface several times, a process called cycling. Our study cycled individual droplets of four species-Argiope aurantia, Neoscona crucifera, Verrucosa arenata, and Larinioides cornutus. Droplets were subjected to 40 cycles at two humidities to determine how humidity affected droplet performance. We hypothesized that droplets would continue to perform, but that performance would decrease. Droplet performance was characterized by filament length and force on droplets at pull-off, aqueous volume, and glycoprotein volume. As hypothesized, cycling decreased performance, notably extensibility and aqueous volume. However, humidity did not impact the response to cycling. In a natural context, droplets are not subjected to extensive cycling, but reusability is advantageous for orb-weaving spiders. Moreover, the ability to cycle, combined with their environmental responsiveness, allows us to characterize orb weaver droplets as smart materials for the first time.

摘要

圆蛛编织的蛛网利用由蛋白质纤维支撑的规则排列的粘性液滴构成的捕获螺旋来捕捉猎物。每个液滴由一个外部水层和一个粘性的、具有粘弹性的糖蛋白核心组成。水层中的有机和无机化合物使液滴具有吸湿性,并导致液滴的特性随环境湿度而变化。当液滴接触到一个表面时,它们会在昆虫挣扎时粘附并伸展。因此,液滴的伸展性对于捕获猎物与它的粘附性同样重要。粗略观察表明,液滴可以多次从一个表面粘附、伸展并脱落,这个过程称为循环。我们的研究对四种蜘蛛——金蛛、十字园蛛、砂疣蛛和角园蛛的单个液滴进行了循环测试。在两种湿度条件下,让液滴经历40次循环,以确定湿度如何影响液滴的性能。我们假设液滴会继续发挥作用,但性能会下降。液滴的性能通过细丝长度、脱落时作用在液滴上的力、水体积和糖蛋白体积来表征。正如所假设的那样,循环降低了性能,尤其是伸展性和水体积。然而,湿度并未影响对循环的反应。在自然环境中,液滴不会经历大量的循环,但可重复使用性对圆蛛是有利的。此外,循环的能力,再加上它们对环境的响应能力,使我们首次能够将圆蛛的液滴表征为智能材料。

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