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Bioprospecting Finds the Toughest Biological Material: Extraordinary Silk from a Giant Riverine Orb Spider

机译:生物勘探发现最坚韧的生物材料:来自巨型河滨天体蜘蛛的非凡丝绸

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摘要

BackgroundCombining high strength and elasticity, spider silks are exceptionally tough, i.e., able to absorb massive kinetic energy before breaking. Spider silk is therefore a model polymer for development of high performance biomimetic fibers. There are over 41.000 described species of spiders, most spinning multiple types of silk. Thus we have available some 200.000+ unique silks that may cover an amazing breadth of material properties. To date, however, silks from only a few tens of species have been characterized, most chosen haphazardly as model organisms (Nephila) or simply from researchers' backyards. Are we limited to ‘blindly fishing’ in efforts to discover extraordinary silks? Or, could scientists use ecology to predict which species are likely to spin silks exhibiting exceptional performance properties?
机译:背景技术蜘蛛丝兼具高强度和弹性,特别坚韧,即能够在断裂前吸收大量动能。因此,蜘蛛丝是用于开发高性能仿生纤维的模型聚合物。有超过41.000种蜘蛛被描述,其中大多数纺丝是多种类型的。因此,我们提供了大约200.000+种独特的丝绸,这些丝绸可能涵盖了惊人的材料性能范围。然而,迄今为止,仅几十种物种的丝绸就已被鉴定出来,大多数是偶然地被选作模型生物(Nephila)或只是从研究人员的后院中选出的。为了发现非凡的丝绸,我们是否仅限于“盲目钓鱼”?或者,科学家是否可以利用生态学来预测哪些物种可能会纺出表现出卓越性能的丝绸?

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