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首页> 外文期刊>The Journal of Experimental Biology >Amphibious fish jump better on land after acclimation to a terrestrial environment
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Amphibious fish jump better on land after acclimation to a terrestrial environment

机译:适应陆地环境后,两栖鱼在陆地上跳得更好

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摘要

Air and water differ dramatically in density and viscosity, posing different biomechanical challenges for animal locomotion. We asked how terrestrial acclimation influences locomotion in amphibious fish, specifically testing the hypothesis that terrestrial tail flip performance is improved by plastic changes in the skeletal muscle. Mangrove rivulus Kryptolebias marmoratus, which remain largely inactive out of water, were exposed to water or air for 14 days and a subgroup of air-exposed fish was also recovered in water. Tail flip jumping performance on land improved dramatically in air-acclimated fish, they had lower lactate levels compared with control fish, and these effects were mostly reversible. Muscle plasticity significantly increased oxidative muscle cross-sectional area and fibre size, as well as the number of capillaries per fibre. Our results show that reversible changes to the oxidative skeletal muscle of K. marmoratus out of water enhance terrestrial locomotory performance, even in the absence of exercise training.
机译:空气和水的密度和粘度差异很大,对动物的运动提出了不同的生物力学挑战。我们询问了陆地驯化如何影响两栖鱼类的运动,特别是检验了骨骼肌塑性变化可以改善陆地尾巴翻转性能的假设。红树林小K Kryptolebias marmoratus仍然在水中不活跃,暴露于水或空气中14天,并且还从水中回收了一部分暴露于空气的鱼。空气适应的鱼在陆地上的尾巴跳跃性能大大提高,与对照鱼相比,它们的乳酸水平较低,而且这些影响大部分是可逆的。肌肉可塑性显着增加了氧化肌的横截面积和纤维大小,以及每根纤维的毛细血管数量。我们的结果表明,即使在没有运动训练的情况下,水中K. marmoratus氧化骨骼肌的可逆变化也会增强陆地运动能力。

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