Morozov Sergey, McCairns R J Scott, Merilä Juha
Ecological Genetics Research Unit, Organismal and Evolutionary Biology Programme, Faculty of Biological and Environmental Sciences, University of Helsinki, Helsinki, Finland.
ESE, Ecology and Ecosystem Health, INRA, Agrocampus Ouest, Rennes, France.
Conserv Physiol. 2019 Feb 6;7(1):coz003. doi: 10.1093/conphys/coz003. eCollection 2019.
Intermittent-flow respirometry is widely used to measure oxygen uptake rates and subsequently estimate aerobic metabolic rates of aquatic animals. However, the lack of a standard quality-control software to detect technical problems represents a potential impediment to comparisons across studies in the field of evolutionary and conservation physiology. Here, we introduce 'FishResp', a versatile R package and its graphical implementation for quality-control and filtering of raw respirometry data. Our goal is to provide a straightforward, cross-platform and free software to help improve the quality and comparability of metabolic rate estimates for reducing methodological fragmentation in the field of aquatic respirometry. FishResp accepts data from various respirometry systems, allows users to detect potential mechanical problems which can occur during oxygen uptake measurements (e.g. chamber leaking, poor water circulation), and offers six options to correct raw data for microbial oxygen consumption. The software performs filtering of raw data based on user criteria, and produces accurate and unbiased estimates of absolute and mass-specific metabolic rates. Using data from three-spined sticklebacks () and Trinidadian guppies (), we demonstrate the virtues of FishResp, highlighting the importance of detecting mechanical problems and correcting measurements for background respiration.
间歇流呼吸测定法被广泛用于测量氧气摄取率,进而估算水生动物的有氧代谢率。然而,缺乏用于检测技术问题的标准质量控制软件,这对进化生理学和保护生理学领域的跨研究比较而言是一个潜在障碍。在此,我们介绍“FishResp”,这是一个多功能的R软件包及其图形化应用程序,用于对原始呼吸测定数据进行质量控制和筛选。我们的目标是提供一个简单、跨平台且免费的软件,以帮助提高代谢率估算的质量和可比性,减少水生呼吸测定领域中的方法碎片化现象。FishResp可接受来自各种呼吸测定系统的数据,能让用户检测在氧气摄取测量过程中可能出现的潜在机械问题(如呼吸室泄漏、水循环不良),并提供六种方法来校正原始数据中的微生物耗氧量。该软件会根据用户标准对原始数据进行筛选,并生成绝对代谢率和质量比代谢率的准确且无偏差的估算值。利用三刺鱼()和特立尼达孔雀鱼()的数据,我们展示了FishResp的优点,强调了检测机械问题以及校正背景呼吸测量值的重要性。