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园蛛科圆网蜘蛛粘性捕获丝的粘性招募作用

Adhesive recruitment by the viscous capture threads of araneoid orb-weaving spiders.

作者信息

Opell Brent D, Hendricks Mary L

机构信息

Department of Biological Sciences, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, USA.

出版信息

J Exp Biol. 2007 Feb;210(Pt 4):553-60. doi: 10.1242/jeb.02682.

Abstract

The sticky prey capture threads of orb-webs are critical to web performance. By retaining insects that strike the web, these spirally arrayed threads allow a spider time to locate and subdue prey. The viscous capture threads spun by modern orb-weaving spiders of the Araneoidea clade replaced the dry, fuzzy cribellar capture threads of the Deinopoidea and feature regularly spaced moist, adhesive droplets. The stickiness of a cribellar thread is limited by its tendency to peel from a surface after the adhesion generated at the edges of contact is exceeded. In this study we test the hypothesis that viscous thread overcomes this limitation by implementing a suspension bridge mechanism (SBM) that recruits the adhesion of multiple thread droplets. We do so by using contact plates of four widths to measure the stickiness of six species' viscous threads whose profiles range from small, closely spaced droplets to large, widely spaced droplets. The increased stickiness registered by an increased number of thread droplets supports the operation of a SBM. However, the accompanying decrease in mean per droplet adhesion shows that droplets interior to the edges of thread contact contribute successively less adhesion. Models developed from these data suggest that the suspension bridge mechanism is limited to a span of approximately 12 droplets.

摘要

圆网蛛的粘性猎物捕获丝对蛛网的性能至关重要。通过留住撞击蛛网的昆虫,这些呈螺旋状排列的丝线让蜘蛛有时间定位并制服猎物。现代圆蛛科圆网蛛所纺出的粘性捕获丝取代了古筛器蛛科的干燥、有绒毛的筛器捕获丝,其特征是有规则间隔的湿润粘性液滴。筛器丝的粘性受到限制,因为当接触边缘产生的附着力被超过后,它就会有从表面剥离的倾向。在本研究中,我们测试了一个假设,即粘性丝线通过实施一种悬桥机制(SBM)克服了这一限制,该机制利用了多个丝线液滴的附着力。我们通过使用四种宽度的接触板来测量六种蜘蛛的粘性丝线的粘性,这些丝线的形态从小而间隔紧密的液滴到又大且间隔宽的液滴不等。丝线液滴数量增加所记录到的粘性增加支持了悬桥机制的运作。然而,伴随而来的单个液滴平均附着力的下降表明,丝线接触边缘内部的液滴所提供的附着力逐渐减少。根据这些数据建立的模型表明,悬桥机制的跨度限制在大约12个液滴。

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