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氧供应能力为临界氧分压(Pcrit)注入新的活力。

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

机构信息

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

出版信息

J Exp Biol. 2021 Apr 15;224(8). doi: 10.1242/jeb.242210. Epub 2021 Apr 30.

DOI:10.1242/jeb.242210
PMID:33692079
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.

摘要

临界氧分压(Pcrit)通常被定义为动物代谢率(MR)无法维持的 PO2 以下值,被广泛解释为缺氧耐受能力的衡量标准。在这里,Pcrit 被定义为生理氧供应(α0)达到最大能力(α;µmol O2 g-1 h-1 kPa-1)时的 PO2。α 是一个物种和温度特异性常数,描述了最大代谢率(MMR=PO2×α)的氧依赖性,或者等效地,Pcrit 的 MR 依赖性(Pcrit=MR/α)。我们描述了α方法,其中 MR 在氧下降时被监测,对于每个测量期,MR 除以相应的 PO2 以提供同时的氧供应(α0=MR/PO2)。最高的α0 值(或者更保守地,三个最高值的平均值)被指定为α。对于任何 MR,只要达到 Pcrit,就会达到相同的α值,而与之前或之后的代谢活动无关。为了准确确定α,MR 不需要是恒定的(调节的)、标准化的或在 Pcrit 处表现出明显的断点。与 Pcrit 确定和非线性分析相比,α方法具有几个优点,包括:(1)更少的歧义性和更高的准确性,(2)在呼吸计方法和分析中更少的限制,以及(3)更大的预测能力和生态和生理洞察力。在评估的物种中,α 值与 MR 相关,但与 Pcrit 无关。Pcrit 不是缺氧耐受能力的指标,而是α的反映,它进化以在当前温度和氧水平下支持最大能量需求和有氧范围。

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