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An augmented wood-penetrating structure: Cicada ovipositors enhanced with metals and other inorganic elements

机译:一种增强的木材穿透结构:Cicada Ovipositors以金属和其他无机元素增强

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摘要

Few insect species are as popular as periodical cicadas (Magicicada spp.). Despite representing an enormous biomass and numbers that exceed 370/msup2/sup during mass emergences, the extended time period of the underground nymphal stages (up to 17 years) complicates investigations of their life history traits and ecology. Upon emergence, female cicadas mate and then use their ovipositors to cut through wood to lay their eggs. Given the ability to penetrate into wood, we hypothesized that the ovipositor cuticle is augmented with inorganic elements, which could increase hardness and reduce ovipositor fracturing. We used scanning electron microscopy and energy dispersive x-ray spectroscopy to evaluate the material properties of ovipositors of four cicada species, including three species of periodical cicadas. We found 14 inorganic elements of the cuticle, of which P, Ca, Si, Mg, Na, Fe, Zn, Mn, Cl, K, and S show the highest concentrations (%wt) near the apex of the ovipositor, where other structural modifications for penetrating wood are present. To the best of our knowledge, this is the first report of metal deposits in the cuticle of true bugs (Hemiptera, 80,000 described species).
机译:很少有昆虫物种与期刊蝉(魔术达SPP)一样受欢迎。尽管代表了大众出现期间超过370 / m 2 的巨大生物量和数量,但地下若虫阶段的延长时间(最长17岁)会使其生命历史特征和生态的调查复杂化。在出现时,女性蝉伴侣,然后使用他们的产卵们通过木材来划出鸡蛋。鉴于渗透到木材中的能力,我们假设产卵带角质层与无机元素增强,这可能会增加硬度并降低产卵压裂。我们使用扫描电子显微镜和能量分散X射线光谱,评价四种蝉物种的产卵材料的材料特性,包括三种期刊蝉。我们发现了14个角质层的无机元素,其中P,Ca,Si,Mg,Na,Fe,Zn,Mn,Cl,K和S显示出在OvipoSitor的顶点附近的最高浓度(%wt),其中存在穿透木材的结构修改。据我们所知,这是真正虫子的角质层的第一份金属沉积物(Hemiptera,> 80,000种描述的物种)。

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