Department of Biological Sciences, University of New Orleans, New Orleans, Louisiana, USA.
J Fish Biol. 2024 May;104(5):1537-1547. doi: 10.1111/jfb.15692. Epub 2024 Feb 25.
The maximum rate at which fish can take up oxygen from their environment to fuel aerobic metabolism is an important feature of their physiology and ecology. Methods to quantify maximum oxygen uptake rate (ṀO), therefore, should reliably and reproducibly estimate the highest possible ṀO by an individual or species under a given set of conditions (peak ṀO). This study determined peak ṀO and its repeatability in Gulf killifish, Fundulus grandis, subjected to three methods to elevate metabolism: swimming at increasing water speeds, during recovery after an exhaustive chase, and after ingestion of a large meal. Estimates of peak ṀO during swimming and after an exhaustive chase were repeatable across two trials, whereas peak ṀO after feeding was not. Peak ṀO determined by the three methods was significantly different from one another, being highest during swimming, lowest after an exhaustive chase, and intermediate after feeding. In addition, peak ṀO during recovery from an exhaustive chase depended on the length of time of recovery: in nearly 60% of the trials, values within the first hour of the chase were lower than those measured later. A novel and important finding was that an individual's peak ṀO was not repeatable when compared across methods. Therefore, the peak ṀO estimated for a group of fish, as well as the ranking of individual ṀO within that group, depends on the method used to elevate aerobic metabolism.
鱼类从环境中摄取氧气以支持有氧代谢的最大速率是其生理学和生态学的一个重要特征。因此,定量最大耗氧率(ṀO)的方法应该能够可靠且可重复地估计个体或物种在给定条件下(峰值ṀO)的最高可能ṀO。本研究确定了海湾小沙丁鱼(Fundulus grandis)在三种方法下提高新陈代谢时的峰值ṀO 及其可重复性:在不断增加的水流速度下游泳、在精疲力竭的追逐后恢复时以及在摄入大餐后。在两次试验中,游泳和精疲力竭追逐后的峰值ṀO 估计值是可重复的,而进食后的峰值ṀO 则不可重复。这三种方法确定的峰值ṀO 彼此之间存在显著差异,游泳时最高,精疲力竭追逐后最低,进食后居中。此外,精疲力竭追逐后的峰值ṀO 取决于恢复时间的长短:在近 60%的试验中,追逐开始后的第一个小时内的数值低于稍后测量的值。一个新颖而重要的发现是,当在不同方法之间进行比较时,个体的峰值ṀO 不可重复。因此,一组鱼的峰值ṀO 估计值以及该组内个体ṀO 的排名取决于用于提高有氧代谢的方法。