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Architecture and material properties of diatom shells provide effective mechanical protection

机译:硅藻壳的结构和材料特性可提供有效的机械保护

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Diatoms are the major contributors to phytoplankton blooms in lakes and in the sea and hence are central in aquatic ecosystems and the global carbon cycle(1). All free-living diatoms differ from other phytoplankton groups in having silicified cell walls in the form of two 'shells' (the frustule) of manifold shape and intricate architecture(2) whose function and role, if any, in contributing to the evolutionary success of diatoms is under debate(3-5). We explored the defence potential of the frustules as armour against predators by measuring their strength. Real and virtual loading tests (using calibrated glass microneedles and finite element analysis) were performed on centric and pennate diatom cells. Here we show that the frustules are remarkably strong by virtue of their architecture and the material properties of the diatom silica. We conclude that diatom frustules have evolved as mechanical protection for the cells because exceptional force is required to break them. The evolutionary arms race between diatoms and their specialized predators will have had considerable influence in structuring pelagic food webs and biogeochemical cycles. [References: 27]
机译:硅藻是湖泊和海洋中浮游植物开花的主要贡献者,因此在水生生态系统和全球碳循环中处于中心地位(1)。所有自由生存的硅藻与其他浮游植物类别的不同之处在于,它们具有硅化的细胞壁,呈两个呈歧管形状和复杂结构的“壳”(壳)形式(2),其功能和作用(如果有的话)有助于进化成功硅藻的数量还在争论中(3-5)。我们通过测量它们的强度来探索它们作为防御天敌的装甲的防御潜力。实际和虚拟的负载测试(使用校准的玻璃微针和有限元分析)在中心和笔形硅藻细胞上进行。在这里,我们显示,由于硅藻壳的结构和硅藻土的材料特性,它们具有非常强的强度。我们得出的结论是,硅藻壳已发展成为对细胞的机械保护,因为需要特殊的力才能使其破裂。硅藻与其专门的捕食者之间的进化军备竞赛将在构造中上层食物网和生物地球化学循环方面产生重大影响。 [参考:27]

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