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Stiffness gradient of the beetle penis facilitates propulsion in the spiraled female spermathecal duct

机译:甲虫阴茎的刚度梯度有利于螺旋形女性精皮管的推进

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摘要

It is well known that sexual selection is the main driving force of substantial diversity of genitalia found in animals. However, how it facilitates the diversity is still largely unknown, because genital morpho/physical features and motions/functional morphology of the structures in sexual intercourse are not linked for the vast majority of organisms. Here we showed the presence of material gradient and numerically studied an effect of stiffness gradient of the beetle penis during its propulsion through the female duct. We found that stiffness gradient on the penis essentially affects its propulsion. Microscopic investigation suggests the possibility that the tip of the hyper-elongated penis is softer than the rest of it, and our numerical model confirms that this type of distribution of stiffness gradient aids in faster propulsion than other types. This result indicates that previously ignored physical properties of genital materials are of crucial importance in evolutionary studies of genitalia.
机译:众所周知,性选择是动物体内​​生殖器大量多样性的主要驱动力。然而,它如何促进多样性仍然是很大程度上未知的,因为性交中的生殖器形态/生理特征和结构的运动/功能形态与绝大多数生物体没有联系。在这里,我们显示了材料梯度的存在,并通过数值研究了甲虫阴茎通过雌性导管推进过程中刚度梯度的影响。我们发现,阴茎上的僵硬度梯度实质上会影响其推进。显微镜研究表明,超长阴茎的尖端比其他部分柔软的可能性,我们的数值模型证实,这种硬度梯度分布类型比其他类型的推进速度更快。该结果表明,以前忽略的生殖器材料的物理特性在生殖器的进化研究中至关重要。

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