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蜘蛛拖牵丝:高性能生物材料中的协同与镶嵌进化

Spider dragline silk: correlated and mosaic evolution in high-performance biological materials.

作者信息

Swanson Brook O, Blackledge Todd A, Summers Adam P, Hayashi Cheryl Y

机构信息

Department of Biology, University of California, Riverside, California 92521, USA.

出版信息

Evolution. 2006 Dec;60(12):2539-51.

PMID:17263115
Abstract

The evolution of biological materials is a critical, yet poorly understood, component in the generation of biodiversity. For example, the diversification of spiders is correlated with evolutionary changes in the way they use silk, and the material properties of these fibers, such as strength, toughness, extensibility, and stiffness, have profound effects on ecological function. Here, we examine the evolution of the material properties of dragline silk across a phylogenetically diverse sample of species in the Araneomorphae (true spiders). The silks we studied are generally stronger than other biological materials and tougher than most biological or man-made fibers, but their material properties are highly variable; for example, strength and toughness vary more than fourfold among the 21 species we investigated. Furthermore, associations between different properties are complex. Some traits, such as strength and extensibility, seem to evolve independently and show no evidence of correlation or trade-off across species, even though trade-offs between these properties are observed within species. Material properties retain different levels of phylogenetic signal, suggesting that traits such as extensibility and toughness may be subject to different types or intensities of selection in several spider lineages. The picture that emerges is complex, with a mosaic pattern of trait evolution producing a diverse set of materials across spider species. These results show that the properties of biological materials are the target of selection, and that these changes can produce evolutionarily and ecologically important diversity.

摘要

生物材料的进化是生物多样性产生过程中的一个关键但却鲜为人知的组成部分。例如,蜘蛛的多样化与它们使用蛛丝方式的进化变化相关,并且这些纤维的材料特性,如强度、韧性、延展性和刚度,对生态功能有着深远影响。在此,我们研究了在蜘蛛目(真蜘蛛)系统发育多样的物种样本中,拖牵丝材料特性的进化。我们研究的蛛丝通常比其他生物材料更强,比大多数生物或人造纤维更坚韧,但其材料特性具有高度变异性;例如,在我们研究的21个物种中,强度和韧性的差异超过四倍。此外,不同特性之间的关联很复杂。一些特性,如强度和延展性,似乎独立进化,在不同物种间没有显示出相关或权衡的证据,尽管在同一物种内观察到了这些特性之间的权衡。材料特性保留了不同程度的系统发育信号,这表明在几个蜘蛛谱系中,诸如延展性和韧性等特性可能受到不同类型或强度的选择。呈现出的情况很复杂,性状进化的镶嵌模式在蜘蛛物种中产生了各种各样的材料。这些结果表明,生物材料的特性是选择的目标,并且这些变化能够产生在进化和生态方面重要的多样性。

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