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首页> 外文期刊>The Journal of Arachnology >The stability of hygroscopic compounds in orb-web spider viscous thread
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The stability of hygroscopic compounds in orb-web spider viscous thread

机译:吸湿性化合物在网状蜘蛛网中的稳定性

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Each of the droplets that form an orb-weaving spider's viscous capture thread are composed of a viscoelastic glycoprotein glue core that is surrounded by an aqueous layer and supported by a pair of protein axial fibers. Low molecular weight organic and inorganic compounds within the aqueous layer confer droplet hygroscopicity, thereby maintaining the glycoprotein's adhesion and extensibility and ensuring that the axial fibers remain supercontracted. These materials also cause droplet volume to change in response to ambient humidity. This study examined the viscous threads of Argiope aurantia Lucas 1833, a species found in exposed, low humidity habitats, and Neoscona crucifera (Lucas 1838), a nocturnal species found in high humidity forest edge habitats. An earlier study showed the former species' threads to be more hygroscopic than those of the latter. When aged and exposed to chemical fixatives, the hygroscopicity of A. aurantia threads decreased, while that of N. crucifera threads was unaffected. Fixation eliminated the extensibility of both species' droplets. However, droplet adhesion, as measured by the deflection angle of a thread's axial lines just prior to droplet extension or, in the case of fixed droplets, droplet pull-off, was unaffected. These findings indicate that the compounds that confer greater hygroscopicity to A. aurantia viscous threads are more susceptible to chemical fixatives than those in the aqueous layer of N. crucifera droplets.
机译:形成球形编织蜘蛛的粘性捕获线的每个液滴均由粘弹性糖蛋白胶核组成,该胶核被水层围绕并由一对蛋白轴向纤维支撑。水层中的低分子量有机和无机化合物赋予液滴吸湿性,从而保持糖蛋白的粘附性和可延展性,并确保轴向纤维保持超收缩状态。这些材料还会导致液滴体积随环境湿度而变化。这项研究检查了在裸露的低湿度生境中发现的苍鹭Argiope aurantia Lucas 1833和在高湿度森林边缘生境中发现的夜行物种Neoscona crucifera(Lucas 1838)的粘性线。较早的一项研究表明,前一个物种的线比后者的吸湿性更高。当老化并暴露于化学固定剂后,Aurantia线的吸湿性降低,而十字花线的吸湿性不受影响。固定消除了两个物种的液滴的可扩展性。但是,液滴附着力不会受到影响,该附着力是通过液滴延伸之前的螺纹轴线的偏转角来衡量的,或者在固定液滴的情况下,液滴会脱落。这些发现表明,赋予十字花科植物粘性线更大吸湿性的化合物比十字花科植物小滴水层中的那些对化学固定剂更敏感。

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