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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Convergent setal morphology in sand-covering spiders suggests a design principle for particle capture
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Convergent setal morphology in sand-covering spiders suggests a design principle for particle capture

机译:集沙蜘蛛中的收敛集合形态表明了粒子捕获的设计原理

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摘要

Sicarius and Homalonychus are unrelated, desert-dwelling spiders that independently evolved the ability to cover themselves in fine sand particles, making them cryptic against their background. Observations that particles associate with these spiders' setae inspired us to investigate the role of setal microstructure in particle capture and retention. Here we report that Sicarius and Homalonychus convergently evolved numerous high aspect ratio, flexible fibres that we call ‘hairlettes’ protruding from the setal shaft. We demonstrate that particles attach more densely to regions of Homalonychus with hairlettes than to other regions of the same animal where hairlettes are absent, and document close contact of hairlettes to sand particles that persists after applying force. Mathematical models further suggest that adhesion of hairlettes to sand particles is a sufficient mechanism of particle capture and retention. Together, these data provide the first evidence that hairlettes facilitate sand retention through intermolecular adhesion to particles. Their independent evolutionary origins in Sicarius and Homalonychus suggest that the unique setal structure is adaptive and represents a general biomechanical mechanism for sand capture to cuticle. This discovery has implications for the design of inventions inspired by this system, from camouflage to the management of granular systems.
机译:Sicarius和Homalonychus是无关的,居住在沙漠中的蜘蛛,它们独立地进化出将自己覆盖在细沙粒中的能力,从而使其在背景下变得神秘。颗粒与这些蜘蛛的刚毛相关的观察结果启发我们研究固结微结构在颗粒捕获和保留中的作用。在这里,我们报道Sicarius和Homalonychus融合发展了许多高长宽比的柔性纤维,我们称其为从腰椎突出的“发丝”。我们证明,与发夹相比,颗粒更紧密地附着在带有发夹的霍马尼丘斯地区,而不是同一个动物的其他区域,没有发夹,并且证明发夹与施加力后持续存在的沙粒紧密接触。数学模型进一步表明,发夹对沙子颗粒的粘附是颗粒捕获和保留的充分机制。这些数据加在一起提供了第一个证据,即发夹通过分子间对颗粒的粘附促进了沙子的保留。它们独立于Sicarius和Homalonychus的进化起源表明,独特的固结结构具有适应性,代表了将沙捕获到表皮的一般生物力学机制。从伪装到精细系统的管理,这一发现对受该系统启发的发明设计具有重要意义。

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