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比较量化代谢率的方法及其与幼体湖鲟 Acipenser fulvescens 活动的关系。

Comparison of methods to quantify metabolic rate and its relationship with activity in larval lake sturgeon Acipenser fulvescens.

机构信息

Department of Biological Sciences, University of Manitoba, Winnipeg, Manitoba, Canada.

Institut des Sciences de la Mer de Rimouski, Université du Québec à Rimouski, Rimouski, Quebec, Canada.

出版信息

J Fish Biol. 2021 Jul;99(1):73-86. doi: 10.1111/jfb.14700. Epub 2021 Mar 8.

Abstract

Until recently most studies have focussed on method development for metabolic rate assessment in adult and/or juvenile fish with less focus on measurement of oxygen consumption (ṀO ) during early life history stages, including fast-growing larval fish and even less focus on nonteleostean species. In the present study we evaluated measurement techniques for standard metabolic rate (SMR), maximum metabolic rate (MMR) and aerobic scope in an Acipenseriform, the lake sturgeon Acipenser fulvescens, throughout the first year of life. Standardized forced exercise protocols to assess MMR were conducted for 5 or 15 min before or after measurement of SMR. We used different levels of oxygen decline during the measurement period of MMR post forced exercise to understand the influence these may have on the calculation of MMR. Opercular rate and tail beat frequencies were recorded by video as measures of behaviours and compared to metabolic rate recorded over a 24 h period. Results indicate that calculated values for aerobic scope were lower in younger fish. Neither exercise sequence nor exercise duration influenced metabolic rate measurements in the younger fish, but exercise duration did affect measurement of MMR in older fish. Finally, there was no strong correlation between metabolic rate and the measured behaviours in the lake sturgeon at either age. Based on the results, we recommend that a minimum of 6 h of acclimation to the respirometry chamber should be given prior to measuring SMR, a chasing protocol to elicit MMR should ideally be performed at the end of experiment, a short chasing time should be avoided to minimize variation and assessment of MMR should balance measurement limitations of the probes along with when and for how long oxygen consumption is measured.

摘要

直到最近,大多数研究都集中在开发用于评估成年和/或幼年鱼类代谢率的方法上,而较少关注早期生活史阶段(包括快速生长的幼鱼)的耗氧量 (ṀO) 测量,甚至更少关注非硬骨鱼类物种。在本研究中,我们评估了标准代谢率 (SMR)、最大代谢率 (MMR) 和有氧运动范围的测量技术,这些技术适用于鲟形目鱼类,即湖鲟 Acipenser fulvescens,整个生命周期的第一年。在测量 SMR 之前或之后,进行了标准化的强制运动方案以评估 MMR,持续时间为 5 或 15 分钟。我们使用了 MMR 强制运动后测量期间不同的耗氧量下降水平,以了解这些水平对 MMR 计算的影响。通过视频记录呼吸仪测量期间的呼吸频率和尾鳍拍打频率,作为行为的衡量标准,并与 24 小时期间记录的代谢率进行比较。结果表明,年轻鱼的计算有氧范围值较低。在年轻的鱼中,运动顺序和运动持续时间都不会影响代谢率的测量,但在年长的鱼中,运动持续时间确实会影响 MMR 的测量。最后,在这两个年龄段的湖鲟中,代谢率与测量的行为之间没有很强的相关性。根据结果,我们建议在测量 SMR 之前,至少需要 6 小时的适应呼吸仪的时间,应在实验结束时进行追逐协议以引发 MMR,应尽量避免短暂的追逐时间以减少变化,并且应平衡评估 MMR 的测量限制,同时考虑到测量时间和测量时间的长短。

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