Steklis Bernd F, Rupert Kaden L, Blackledge Todd A
Department of Biology and Integrated Bioscience Program, University of Akron, Akron, OH, USA.
Research and Development, Tremco Inc, Beachwood, OH, USA.
J R Soc Interface. 2025 Feb;22(223):20240650. doi: 10.1098/rsif.2024.0650. Epub 2025 Feb 12.
Spiders use piriform silk attachment discs to adhere threads during web construction and to secure safety lines. Water could degrade attachment disc adhesion by either interfering with placement of the discs or later reducing adhesion during loading. We tested the effect of water on the adhesion of attachment discs for the spider , which spins webs in mostly dry environments. We compared adhesion for discs spun on wet versus dry glass that were subsequently loaded in either wet or dry conditions. Attachment discs placed on wet glass showed similar adhesion to discs placed on dry glass. However, water significantly decreased both peak force of adhesion and work of adhesion when loading occurred under wet conditions, regardless of initial placement conditions. Furthermore, failure mode shifted from rupture of draglines in dry loading conditions to adhesive failure of discs in wet loading conditions. Our results show the importance of considering both the conditions in which biological structures are produced and those in which the structures perform as potentially independent factors for performance. Our results also suggest that adhesion in wet conditions can challenge some spiders, potentially leading to specialization of attachment discs for riparian or aquatic species.
蜘蛛在结网过程中使用梨形丝附着盘来固定丝线,并确保安全线。水可能会通过干扰附着盘的放置或在加载过程中降低附着力来降低附着盘的附着力。我们测试了水对主要在干燥环境中结网的蜘蛛附着盘附着力的影响。我们比较了在湿玻璃和干玻璃上纺制的附着盘在随后的湿或干条件下加载时的附着力。放置在湿玻璃上的附着盘与放置在干玻璃上的附着盘表现出相似的附着力。然而,无论初始放置条件如何,当在湿条件下加载时,水都会显著降低附着力的峰值力和附着力功。此外,失效模式从干加载条件下的拖丝断裂转变为湿加载条件下附着盘的粘附失效。我们的结果表明,既要考虑生物结构产生的条件,也要考虑结构发挥作用的条件,这两个条件作为性能的潜在独立因素具有重要意义。我们的结果还表明,湿条件下的附着力可能对一些蜘蛛构成挑战,这可能导致河岸或水生物种的附着盘出现特化。