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首页> 外文期刊>Marine biology >Compressive strength of Mytilus californianus shell is time-dependent and can influence the potential foraging strategies of predators
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Compressive strength of Mytilus californianus shell is time-dependent and can influence the potential foraging strategies of predators

机译:加州扁桃壳的抗压强度与时间有关,会影响捕食者潜在的觅食策略

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摘要

The calcareous exoskeletons of bivalve molluscs protect the organisms from environmental stressors, including physical loads like impacts (e.g., from wave-borne rocks) and compressions (e.g., from predators). The magnitude and time scales of physical loads can occur over a wide range of values, and little is known about how the strength of bivalve shells are affected by the speed of impact or compression. We used the intertidal mussel Mytilus californianus to test how the rate of compression affects the strength of the mussel's shell. Shell strength was time-dependent, and shells withstood 11.5% larger loads if those loads were applied quickly than if they were applied slowly. We then tested whether the shell's time-dependent strength could influence the strategy of predators trying to compress and fracture the shells. Between strategies with the same compression rate, using more force reduced the time and mechanical work to fracture shells. However, between strategies with the same force, compressing shells slowly reduced the time required to fracture large shells, while the opposite was true for small shells. These results indicate that shell strength is not a static property. Time-dependent strength can influence the interactions between mussels and the physical loads they experience in nature, including their interactions with predators. Studies investigating the influence of climate change on the architecture and strength of mollusc shells should incorporate a range of ecologically relevant compression rates in their measurements to better understand how climate change will affect these organisms.
机译:双壳软体动物的钙质外骨骼可以保护生物免受环境压力,包括物理负荷(例如撞击(例如,波涛滚滚的岩石)和压缩物(例如,捕食者))。物理载荷的大小和时间尺度可以在很宽的数值范围内发生,而对双壳壳的强度如何受到冲击或压缩速度的影响知之甚少。我们使用潮间贻贝Mytilus californianus来测试压缩率如何影响贻贝壳的强度。壳的强度与时间有关,承受较慢的壳体承受的载荷要大11.5%。然后,我们测试了壳的时间依赖性强度是否会影响掠食者试图压缩和破坏壳的策略。在具有相同压缩率的策略之间,使用更多的力会减少破裂壳的时间和机械功。但是,在使用相同力的策略之间,压缩炮弹可缓慢减少大炮弹破裂所需的时间,而小炮弹则相反。这些结果表明壳强度不是静态特性。随时间变化的强度会影响贻贝与其在大自然中所经历的物理负荷之间的相互作用,包括与捕食者的相互作用。研究气候变化对软体动物壳结构和强度的影响的研究应在测量中纳入一系列与生态相关的压缩率,以更好地了解气候变化将如何影响这些生物。

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  • 来源
    《Marine biology》 |2018年第3期|42.1-42.9|共9页
  • 作者

    Burnett Nicholas P.; Belk Anna;

  • 作者单位

    Univ Calif Berkeley, Dept Integrat Biol, Berkeley, CA 94720 USA;

    Univ Calif Berkeley, Dept Integrat Biol, Berkeley, CA 94720 USA;

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  • 正文语种 eng
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