首页> 美国卫生研究院文献>Frontiers in Physiology >Intraspecific variation in aerobic and anaerobic locomotion: gilthead sea bream (Sparus aurata) and Trinidadian guppy (Poecilia reticulata) do not exhibit a trade-off between maximum sustained swimming speed and minimum cost of transport
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Intraspecific variation in aerobic and anaerobic locomotion: gilthead sea bream (Sparus aurata) and Trinidadian guppy (Poecilia reticulata) do not exhibit a trade-off between maximum sustained swimming speed and minimum cost of transport

机译:有氧运动和无氧运动的种内变化:head头鲷(Sparus aurata)和特立尼达孔雀鱼(Poecilia reticulata)在最大持续游泳速度和最低运输成本之间没有权衡取舍

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摘要

Intraspecific variation and trade-off in aerobic and anaerobic traits remain poorly understood in aquatic locomotion. Using gilthead sea bream (Sparus aurata) and Trinidadian guppy (Poecilia reticulata), both axial swimmers, this study tested four hypotheses: (1) gait transition from steady to unsteady (i.e., burst-assisted) swimming is associated with anaerobic metabolism evidenced as excess post exercise oxygen consumption (EPOC); (2) variation in swimming performance (critical swimming speed; Ucrit) correlates with metabolic scope (MS) or anaerobic capacity (i.e., maximum EPOC); (3) there is a trade-off between maximum sustained swimming speed (Usus) and minimum cost of transport (COTmin); and (4) variation in Usus correlates positively with optimum swimming speed (Uopt; i.e., the speed that minimizes energy expenditure per unit of distance traveled). Data collection involved swimming respirometry and video analysis. Results showed that anaerobic swimming costs (i.e., EPOC) increase linearly with the number of bursts in S. aurata, with each burst corresponding to 0.53 mg O2 kg−1. Data are consistent with a previous study on striped surfperch (Embiotoca lateralis), a labriform swimmer, suggesting that the metabolic cost of burst swimming is similar across various types of locomotion. There was no correlation between Ucrit and MS or anaerobic capacity in S. aurata indicating that other factors, including morphological or biomechanical traits, influenced Ucrit. We found no evidence of a trade-off between Usus and COTmin. In fact, data revealed significant negative correlations between Usus and COTmin, suggesting that individuals with high Usus also exhibit low COTmin. Finally, there were positive correlations between Usus and Uopt. Our study demonstrates the energetic importance of anaerobic metabolism during unsteady swimming, and provides intraspecific evidence that superior maximum sustained swimming speed is associated with superior swimming economy and optimum speed.
机译:有氧和无氧性状的种内变异和权衡在水生运动中仍然知之甚少。这项研究使用了两个轴向游泳者金头鲷(Sparus aurata)和特立尼达孔雀鱼(Poecilia reticulata),检验了四个假设:(1)步态从稳定到不稳定(即爆发辅助)的游泳与厌氧代谢有关,被证明是运动后氧气消耗过多(EPOC); (2)游泳表现的变化(临界游泳速度; Ucrit)与代谢范围(MS)或无氧能力(即最大EPOC)相关; (3)在最大持续游泳速度(Usus)和最低运输成本(COTmin)之间进行权衡; (4)Usus的变化与最佳游泳速度(Uopt;即,使每单位行驶距离的能量消耗最小的速度)正相关。数据收集涉及游泳呼吸测定法和视频分析。结果表明,无氧游泳费用(EPOC)随金黄色葡萄球菌爆发次数线性增加,每次爆发对应于0.53 mg O2 kg -1 。数据与先前关于条纹状冲浪者(Embiotocalateralis)(一种唇形游泳者)的研究一致,这表明爆发性游泳的代谢成本在各种类型的运动中相似。 Ucrit与金黄色葡萄球菌的MS或厌氧能力之间没有相关性,表明其他因素(包括形态或生物力学特征)影响了Ucrit。我们没有发现在Usus和COTmin之间进行折衷的证据。实际上,数据显示Usus与COTmin之间存在显着的负相关性,表明Usus高的个体也表现出低的COTmin。最后,Usus和Uopt之间存在正相关。我们的研究证明了不稳定游泳过程中厌氧代谢的能量重要性,并提供种内证据,证明最佳的最大持续游泳速度与最佳的游泳经济性和最佳速度有关。

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