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Brown widow (Latrodectus geometricus) major ampullate silk protein and its material properties.

机译:布朗寡妇(Latrodectus geometricus)主要壶腹丝蛋白及其材料特性。

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Major ampullate (dragline) silk is the main web component as well as the silk that spiders use for a lifeline when they fall. This silk has a breaking stress of 4.6 GPa, which is similar to that of Kevlar. The majority of the previous mechanical testing studies involved the major ampullate silk from orb-weaving spiders. To date, there have been no reports on dragline silk mechanical properties from a cob-weaver, brown widow Latrodectus geometricus. L. geometricus dragline was found to be composed of MaSp1, MaSp2, and MaSp-like proteins all of which have highly conserved amino acid motifs, especially the GGX, GA and poly A for MaSp1 and GPGGX and poly A for MaSp2. These sequences are the same as those found in the silks of orb-weaving spiders. To determine if protein sequences influence the material properties of the silk, mechanical testing was performed on single strands of silk fibers from adult female L. geometricus spiders. The 3 cm long silk fibers were tested for breaking stress and strain with a MTS Synergie 100 mechanical testing system using a 50 g load cell with the cross-head speed set at 10 mm/min. The breaking stress and strain were measured for 20 replicate samples and averaged. The values of 0.83 +/- 0.19 GPa for stress and 0.14 +/- 0.06 for strain shows that brown widow dragline is weaker than the orb-weaving spiders.
机译:主要的壶腹丝是蜘蛛网的主要组成部分,也是蜘蛛掉落时用作救生索的丝。该丝的断裂应力为4.6 GPa,与凯夫拉尔的断裂应力相似。先前的大多数机械测试研究都涉及到织球蜘蛛的主要壶腹丝。迄今为止,还没有关于玉米芯棕色寡妇Latrodectus geometricus的拉铲丝丝绸机械性能的报道。发现几何乳杆菌拉线由MaSp1,MaSp2和类似MaSp的蛋白质组成,所有这些蛋白质均具有高度保守的氨基酸基序,尤其是对于MaSp1和GPGGX而言,GGX,GA和poly A和对于MaSp2而言都是polyA。这些序列与在织球蜘蛛的丝中发现的序列相同。为了确定蛋白质序列是否影响蚕丝的材料特性,对成年雌性几何狼蛛蜘蛛丝纤维的单股进行了机械测试。使用MTS Synergie 100机械测试系统,使用50 g称重传感器,将十字头速度设置为10 mm / min,测试了3 cm长的丝纤维的断裂应力和应变。测量20个重复样品的断裂应力和应变并取平均值。应力的值为0.83 +/- 0.19 GPa,应变的值为0.14 +/- 0.06,这表明棕色寡妇拉斗铲的强度比球形编织蜘蛛的弱。

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