计算流体动力学揭示三核形态三叶虫基因延长的流体动力学功能

Stephen Pates, Harriet B. Drage
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摘要

三叶虫是古生代节肢动物中的一个多样化支系,其形态一再趋同于三核形态。三核虫拥有拱形的头足,具有宽阔的前缘和突出的后向生殖突。人们对边缘的功能提出了各种假说,但对生殖器延长部分可能具有的功能关注较少。在这里,我们使用计算流体动力学方法来检验这些延长部是否具有流体动力学功能:产生负升力,使三核虫在海底保持原位,防止在快速流动的水中翻转。我们模拟了在流速为 0.05 至 0.5 米/秒的底栖环境中,具有宽、窄和无瓣膜延长的头足类在两种头足姿态下的表现。第一种姿态的头前部与海底平行,而第二种姿态的生殖突与海底平行。研究发现,姿态和生殖器延长线的存在对产生负升力非常重要,在流速较快的情况下,负升力的表现会有所改善。没有发现狭窄和宽阔的鳍状突之间存在明显差异。这项研究支持了类似于某些昆虫幼虫股骨的鳍状突具有流体动力学功能的观点,但也不排除鳍状突还具有雪鞋或反捕食威慑的其他功能。
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Hydrodynamic function of genal prolongations in trinucleimorph trilobites revealed by computational fluid dynamics
Trilobites, a diverse clade of Palaeozoic arthropods, repeatedly converged on the trinucleimorph morphology. Trinucleimorphs possessed vaulted cephala with a broad anterior fringe and prominent posteriorly orientated genal prolongations. Various functional hypotheses have been proposed for the fringe, however the possible function of the genal prolongations has received less attention. Here we use a computational fluid dynamics approach to test whether these prolongations served a hydrodynamic function: generating negative lift to allow trinucleimorphs to remain in place on the seafloor and prevent overturning within fast flowing water. We simulated the performance of cephala with broad, narrow, and absent genal prolongations in a benthic environment with flow speeds ranging from 0.05 to 0.5 m s-1, in two cephalic postures. The first posture had the anterior of the cephalon parallel to the seafloor, while for the second the genal prolongations were parallel to the seafloor. Posture and presence of genal prolongations were found to be important for generating negative lift, with performance improving under faster flow speeds. No significant difference between narrow and broad genal prolongations was detected. This study provides support for genal prolongations serving a hydrodynamic function, similar to the femurs of some insect larvae, however, it does not preclude prolongations also serving additional functions as snowshoes or antipredatory deterrents.
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