首页> 美国卫生研究院文献>Beilstein Journal of Nanotechnology >A comparison of tarsal morphology and traction force in the two burying beetles Nicrophorus nepalensis and Nicrophorus vespilloides (Coleoptera Silphidae)
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A comparison of tarsal morphology and traction force in the two burying beetles Nicrophorus nepalensis and Nicrophorus vespilloides (Coleoptera Silphidae)

机译:两种埋藏甲虫Nicrophorus nepalensis和Nicrophorus vespilloides(鞘翅目Silphidae)的骨形态和牵引力的比较

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摘要

Our aim was to compare friction and traction forces between two burying beetle species of the genus Nicrophorus exhibiting different attachment abilities during climbing. Specifically, the interaction of adhesive hairs and claws during attachment with respect to various surface properties was investigated by using a 2 × 3 experimental design. Traction force was measured for two different surface energies (hydrophilic vs hydrophobic) varying in roughness from smooth to micro-rough to rough. Nanotribometric tests on single legs were also performed. The external morphology of the attachment devices investigated by scanning electron microscopy suggested higher intra-specific (intersexual) than inter-specific differences. Whereas differences between the two species in traction force were high on smooth surfaces, no differences could be detected between males and females within each species. With claws intact, both species showed the highest forces on rough surfaces, although N. nepalensis with clipped claws performed best on a smooth surface. However, N. nepalensis beetles outperformed N. vespilloides, which showed no differences between smooth and rough surfaces with clipped claws. Both species demonstrated poor traction forces on micro-rough surfaces. Results concerning the impact of surface polarity were inconclusive, whereas roughness more strongly affected the attachment performance in both species. Nanotribometric analyses of the fore tarsi performed on micro-rough and rough surfaces revealed higher friction in the proximal (pull) direction compared with the distal (push) direction. In these experiments, we detected neither differences in friction performance between the two species, nor clear trends concerning the influence of surface polarity. We conclude that the investigated morphological traits are not critical for the observed interspecific difference in attachment ability on smooth surfaces. Furthermore, interspecific differences in performance are only clear on smooth surfaces and vanish on micro-rough and rough surfaces. Our results suggest that even subtle differences in the adhesion-mediating secretion in closely related species might result in qualitative performance shifts.
机译:我们的目的是比较在攀爬过程中表现出不同附着能力的两个Nicrophorus埋藏甲虫物种之间的摩擦力和牵引力。具体而言,使用2×3实验设计研究了附着期间毛发和爪子在各种表面特性方面的相互作用。测量了两种不同表面能(亲水性与疏水性)的牵引力,其粗糙度从光滑到微粗糙再到粗糙。还对单腿进行了纳米摩擦测试。通过扫描电子显微镜研究的附着装置的外部形态表明,种内差异(种间)高于种间差异。尽管两种物种在光滑表面上的牵引力差异很大,但每个物种中的雄性和雌性之间均未检测到差异。爪完好无损,两个物种在粗糙表面上显示出最高的作用力,尽管带有修剪爪的尼泊尔猪笼草在光滑表面上表现最佳。但是,尼泊尔猪笼虫的表现优于猪笼草,这表明在光滑和粗糙的表面(夹有爪)之间没有差异。两种物种在微粗糙表面上均表现出较弱的牵引力。关于表面极性影响的结果尚无定论,而粗糙度对两种物种的附着性能影响更大。在微粗糙和粗糙表面上进行的前骨的纳米摩擦分析显示,与远侧(推动)方向相比,近侧(拉动)方向的摩擦更大。在这些实验中,我们既未检测到两种物质之间的摩擦性能差异,也未检测到有关表面极性影响的明确趋势。我们得出结论,所研究的形态特征对于在光滑表面上的附着能力所观察到的种间差异不是至关重要的。此外,性能之间的种间差异仅在光滑表面上清晰可见,而在微粗糙和粗糙表面上消失。我们的研究结果表明,即使在密切相关的物种中,介导黏附分泌的细微差异也可能导致性能发生变化。

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