Oxygen supply capacity breathes new life into critical oxygen partial pressure (Pcrit)

Author:

Seibel Brad A.1ORCID,Andres Alyssa1,Birk Matthew A.1ORCID,Burns Alexandra L.1,Shaw C. Tracy1ORCID,Timpe Alexander W.1,Welsh Christina J.1

Affiliation:

1. College of Marine Science, University of South Florida, St Petersburg, FL 33701, USA

Abstract

ABSTRACT The critical oxygen partial pressure (Pcrit), typically defined as the PO2 below which an animal's metabolic rate (MR) is unsustainable, is widely interpreted as a measure of hypoxia tolerance. Here, Pcrit is defined as the PO2 at which physiological oxygen supply (α0) reaches its maximum capacity (α; µmol O2 g−1 h−1 kPa−1). α is a species- and temperature-specific constant describing the oxygen dependency of the maximum metabolic rate (MMR=PO2×α) or, equivalently, the MR dependence of Pcrit (Pcrit=MR/α). We describe the α-method, in which the MR is monitored as oxygen declines and, for each measurement period, is divided by the corresponding PO2 to provide the concurrent oxygen supply (α0=MR/PO2). The highest α0 value (or, more conservatively, the mean of the three highest values) is designated as α. The same value of α is reached at Pcrit for any MR regardless of previous or subsequent metabolic activity. The MR need not be constant (regulated), standardized or exhibit a clear breakpoint at Pcrit for accurate determination of α. The α-method has several advantages over Pcrit determination and non-linear analyses, including: (1) less ambiguity and greater accuracy, (2) fewer constraints in respirometry methodology and analysis, and (3) greater predictive power and ecological and physiological insight. Across the species evaluated here, α values are correlated with MR, but not Pcrit. Rather than an index of hypoxia tolerance, Pcrit is a reflection of α, which evolves to support maximum energy demands and aerobic scope at the prevailing temperature and oxygen level.

Publisher

The Company of Biologists

Subject

Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics

Reference82 articles.

1. Hypoxia tolerance and aerobic scope in spiny dogfish, Squalus acanthias, as a function of temperature;Andres

2. The effect of hypoxia on behavioural and physiological aspects of lesser sandeel, Ammodytes tobianus;Behrens;Mar. Biol.,2007

3. Ocean acidification does not limit squid metabolism via blood oxygen supply.;Birk;J. Exp. Biol.,2018

4. Metabolic adaptations of the pelagic octopod Japetella diaphana to oxygen minimum zones;Birk;Deep-Sea Research Part I,2019

5. Nautilus and the art of metabolic maintenance

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