Piorkowski Dakota, Blackledge Todd A
Department of Biology, The University of Akron, Akron, OH, 44325-3908, USA.
Department of Life Science, Tunghai University, Taichung, 40704, Taiwan.
Naturwissenschaften. 2017 Aug;104(7-8):67. doi: 10.1007/s00114-017-1489-x. Epub 2017 Jul 27.
The origin of viscid capture silk in orb webs, from cribellate silk-spinning ancestors, is a key innovation correlated with significant diversification of web-building spiders. Ancestral cribellate silk consists of dry nanofibrils surrounding a stiff, axial fiber that adheres to prey through van der Waals interactions, capillary forces, and physical entanglement. In contrast, viscid silk uses chemically adhesive aqueous glue coated onto a highly compliant and extensible flagelliform core silk. The extensibility of the flagelliform fiber accounts for half of the total work of adhesion for viscid silk and is enabled by water in the aqueous coating. Recent cDNA libraries revealed the expression of flagelliform silk proteins in cribellate orb-weaving spiders. We hypothesized that the presence of flagelliform proteins in cribellate silk could have allowed for a gradual shift in mechanical performance of cribellate axial silk, whose effect was masked by the dry nature of its adhesive. We measured supercontraction and mechanical performance of cribellate axial silk, in wet and dry states, for two species of cribellate orb web-weaving spiders to see if water enabled flagelliform silk-like performance. We found that compliance and extensibility of wet cribellate silk increased compared to dry state as expected. However, when compared to other silk types, the response to water was more similar to other web silks, like major and minor ampullate silk, than to viscid silk. These findings support the punctuated evolution of viscid silk mechanical performance.
圆网中粘性捕获丝起源于产 cribellate 丝的祖先,这是一项关键创新,与织网蜘蛛的显著多样化相关。祖先的 cribellate 丝由围绕着一根坚硬轴向纤维的干燥纳米纤维组成,该轴向纤维通过范德华相互作用、毛细作用力和物理缠结附着在猎物上。相比之下,粘性丝使用涂覆在高度柔顺且可延展的鞭状核心丝上的化学粘性水性胶水。鞭状纤维的可延展性占粘性丝总粘附功的一半,并且由水性涂层中的水实现。最近的 cDNA 文库揭示了产 cribellate 丝的圆网蜘蛛中鞭状丝蛋白的表达。我们推测,cribellate 丝中存在鞭状蛋白可能使 cribellate 轴向丝的机械性能逐渐发生转变,其效果被其干性粘合剂所掩盖。我们测量了两种产 cribellate 丝的圆网蜘蛛的 cribellate 轴向丝在湿态和干态下的超收缩和机械性能,以查看水是否能实现类似鞭状丝的性能。我们发现,与干燥状态相比,湿态下的 cribellate 丝的柔顺性和可延展性如预期那样增加了。然而,与其他丝类型相比,其对水的反应更类似于其他蛛网丝,如主要和次要壶腹状丝,而非粘性丝。这些发现支持了粘性丝机械性能的间断性进化。