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水生呼吸测定法中的实验方法:混合装置的重要性及背景呼吸的计算

Experimental methods in aquatic respirometry: the importance of mixing devices and accounting for background respiration.

作者信息

Rodgers G G, Tenzing P, Clark T D

机构信息

ARC Centre of Excellence for Coral Reef Studies, and College of Marine and Environmental Sciences, James Cook University, Townsville, QLD 4811, Australia.

AIMS@JCU Research Program, Townsville, QLD 4811, Australia.

出版信息

J Fish Biol. 2016 Jan;88(1):65-80. doi: 10.1111/jfb.12848.

Abstract

In light of an increasing trend in fish biology towards using static respirometry techniques without the inclusion of a mixing mechanism and without accurately accounting for the influence of microbial (background) respiration, this paper quantifies the effect of these approaches on the oxygen consumption rates (ṀO2 ) measured from juvenile barramundi Lates calcarifer (mean ± s.e. mass = 20·31 ± 0·81 g) and adult spiny chromis damselfish Acanthochromis polyacanthus (22·03 ± 2·53 g). Background respiration changed consistently and in a sigmoidal manner over time in the treatment with a mixing device (inline recirculation pump), whereas attempts to measure background respiration in the non-mixed treatment yielded highly variable estimates of ṀO2 that were probably artefacts due to the lack of water movement over the oxygen sensor during measurement periods. This had clear consequences when accounting for background respiration in the calculations of fish ṀO2 . Exclusion of a mixing device caused a significantly lower estimate of ṀO2 in both species and reduced the capacity to detect differences between individuals as well as differences within an individual over time. There was evidence to suggest that the magnitude of these effects was dependent on the spontaneous activity levels of the fish, as the difference between mixed and non-mixed treatments was more pronounced for L. calcarifer (sedentary) than for A. polyacanthus (more spontaneously active). It is clear that respirometry set-ups for sedentary species must contain a mixing device to prevent oxygen stratification inside the respirometer. While more active species may provide a higher level of water mixing during respirometry measurements and theoretically reduce the need for a mixing device, the level of mixing cannot be quantified and may change with diurnal cycles in activity. To ensure consistency across studies without relying on fish activity levels, and to enable accurate assessments of background respiration, it is recommended that all respirometry systems should include an appropriate mixing device.

摘要

鉴于鱼类生物学领域越来越倾向于使用静态呼吸测定技术,这些技术既不包含混合机制,也未准确考虑微生物(背景)呼吸的影响,本文量化了这些方法对从幼体尖吻鲈(Lates calcarifer,平均±标准误质量 = 20.31 ± 0.81克)和成体多棘刺光鳃鱼(Acanthochromis polyacanthus,22.03 ± 2.53克)测得的耗氧率(ṀO2)的影响。在使用混合装置(在线循环泵)的处理中,背景呼吸随时间呈一致且呈S形变化,而在未混合处理中尝试测量背景呼吸时,得到的ṀO2估计值高度可变,这可能是由于测量期间氧传感器上方缺乏水流导致的假象。在计算鱼类ṀO2时考虑背景呼吸时,这产生了明显的后果。不使用混合装置会导致两个物种的ṀO2估计值显著降低,并降低检测个体之间差异以及个体随时间变化差异的能力。有证据表明,这些影响的程度取决于鱼类的自发活动水平,因为对于尖吻鲈(久坐不动)而言,混合处理和未混合处理之间的差异比多棘刺光鳃鱼(更具自发活动能力)更为明显。显然,用于久坐物种的呼吸测定装置必须包含混合装置,以防止呼吸计内部出现氧分层。虽然更活跃的物种在呼吸测定测量期间可能会提供更高水平的水混合,并且理论上减少对混合装置的需求,但混合水平无法量化,并且可能会随活动的昼夜周期而变化。为确保各研究之间的一致性,而不依赖于鱼类活动水平,并能够准确评估背景呼吸,建议所有呼吸测定系统都应包括适当的混合装置。

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