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Burrowing below ground: interaction between soil mechanics and evolution of subterranean mammals

机译:下面挖洞:土壤力学与地下哺乳动物的进化之间的相互作用

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摘要

The evolution of species is governed by complex phenomena in which biological and environmental features may interact dynamically. Subterranean mammals dig tunnels whose diameter minimizes energetic costs during excavations and display anatomical adaptations in order to burrow structurally stable tunnels according to specific features of the soil. These animals weight from less than 50 g up to 1–2 kg, and dig tunnels with diameters from 3 to 15 cm. The use of allometric laws has enabled these data to be correlated. However, since tunnels need to be stable with respect to the geomechanical characteristics of the resident soils, a mathematical treatment linking the admissible dimensions of tunnels to the environment here suggests a mechanically grounded correlation between the body mass of subterranean mammals and the maximum dimensions of tunnels. Remarkably, such theoretical findings reflect very well the empirical allometric relationship and contribute to explain the wide differences observed in body sizes of subterranean mammals. In this respect, a far from ancillary role of environmental mechanics on the morphological evolution of subterranean mammals can be hypothesized.
机译:物种的演变受复杂现象的管辖,其中生物和环境特征可以动态地相互作用。地下哺乳动物挖掘隧道,其直径在挖掘过程中最小化能量成本,并显示解剖改编,以根据土壤的特定特征来挖洞结构稳定的隧道。这些动物重量少于50克,高达1-2千克,直径3至15厘米的隧道挖出隧道。使用各种定律的使用使这些数据能够相关。然而,由于隧道需要对居民土壤的地质力学特性保持稳定,因此将隧道允许尺寸与环境连接的数学处理表明,地下哺乳动物的体重与隧道的最大尺寸之间的机械接地相关性。值得注意的是,这种理论发现反映了良好的经验形式的关系,并有助于解释在地下哺乳动物的体积中观察到的宽差。在这方面,远离环境力学的辅助作用对地下哺乳动物的形态演变可以假设。

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