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穿刺力学:以臭虫为例,展示使用阳茎侧叶进行创伤性授精。

The puncture mechanics: an example from the bed bug showing traumatic insemination using the paramere.

机构信息

Department of Functional Morphology and Biomechanics, Zoological Institute, Kiel University , Kiel, Germany.

Systematic Entomology, Graduate School of Agriculture, Hokkaido University , Sapporo 060-8589, Japan.

出版信息

J R Soc Interface. 2024 May;21(214):20240108. doi: 10.1098/rsif.2024.0108. Epub 2024 May 29.

Abstract

Cimicidae are well-known for traumatic insemination, and males pierce females with their parameres and transfer sperm through them. The shape of parameres is relatively stable in the family, but in some genera, the paramere is elongated, appearing less resistant against lateral deflection. To understand the mechanical limitations of the paramere, we studied its penetration mechanics of the common bed bug, . We examined the post-abdominal morphology, paramere geometry and material properties and conducted breaking stress experiments on the paramere under wet and dry conditions. Mechanical property gradients are present with the paramere tip as the stiffest region and the base as the most flexible one. These mechanical properties relate to the presence of Ca, Zn and Si. The basal wing-shaped structure is flexible, enabling it to interlock with the anal region during mating. The paramere is slightly twisted; the tip region is circular in cross-section, and the geometry of the rest is rather complex. In the mechanical tests, wet parameres mainly buckled, while dried parameres broke off. The level of structural failures depended on directions from which the compression forces were applied. Structural, material and mechanical strengthening mechanisms preventing the paramere from mechanical failure are discussed.

摘要

臭虫科以创伤性授精而闻名,雄性用交接器刺穿雌性,并通过交接器传输精子。在臭虫科中,交接器的形状相对稳定,但在某些属中,交接器被拉长,显得对侧向偏斜的抵抗力较弱。为了了解交接器的力学限制,我们研究了常见的床虱( )的交接器穿透力学。我们检查了腹部后形态、交接器的几何形状和材料特性,并在干湿条件下对交接器进行了断裂应力实验。交接器的尖端是最硬的区域,基部是最灵活的区域,存在力学性能梯度。这些力学特性与 Ca、Zn 和 Si 的存在有关。基部的翼状结构是灵活的,使得它在交配时可以与肛门区域互锁。交接器略微扭曲,尖端区域的横截面为圆形,其余部分的形状则相当复杂。在力学测试中,湿的交接器主要发生屈曲,而干燥的交接器则断裂。结构失效的程度取决于施加压缩力的方向。讨论了防止交接器发生力学失效的结构、材料和力学强化机制。

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