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The evolution of complex biomaterial performance: The case of spider silk

机译:复杂生物材料性能的演变:以蜘蛛丝为例

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Spider silk is a high-performance biomaterial with exceptional mechanical properties and over half a century of research into its mechanics, structure, and biology. Recent research demonstrates that it is a highly variable class of materials that differs across species and individuals in complex and interesting ways. Here, we review recent literature on mechanical variation and evolution in spider silk. We then present new data on material properties of silk from nine species of spiders in the Mesothelae and Mygalomorphae, the two basal clades of spiders. Silk from spiders in the Araneomorphae (true spiders where most previous research on silk has focused) is significantly stronger and therefore much tougher than the silk produced by spiders in the basal groups. These data support the hypothesis that the success and diversity seen in araneomorph spiders is associated with the evolution of this high-performance fiber. This comparative approach shows promise as a way to understand complex, high-performance biomaterials.
机译:蜘蛛丝是一种高性能的生物材料,具有卓越的机械性能,并在其力学,结构和生物学方面进行了半个多世纪的研究。最近的研究表明,这是一类高度可变的材料,它以复杂而有趣的方式因物种和个体而异。在这里,我们回顾了有关蜘蛛丝机械变化和演化的最新文献。然后,我们介绍了来自两个蜘蛛基生间皮的Mesothelae和Mygalomorphae中的9种蜘蛛的丝绸材料特性的新数据。 Araneomorphae(真正的蜘蛛,以前对丝绸的大多数研究都集中在其中)的蜘蛛丝比基础群体的蜘蛛产生的丝强得多,因此也要坚韧得多。这些数据支持这样的假说:在无形蜘蛛中看到的成功和多样性与这种高性能纤维的发展有关。这种比较方法显示出有望作为理解复杂的高性能生物材料的一种方式。

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