智人口渴机制的进化:口渴和水合的必要性和局限性

IF 2.1 3区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Comparative Biochemistry and Physiology A-Molecular & Integrative Physiology Pub Date : 2024-09-19 DOI:10.1016/j.cbpa.2024.111745
Frank E. Marino
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引用次数: 0

摘要

有一种观点认为,口渴感和实际体液平衡可能会影响认知和运动表现。进化证据表明,人类的生存依赖于我们在炎热的白天狩猎时大量出汗的能力(持续狩猎),因此,如果不能耐受缺水,口渴机制就会限制我们的持续狩猎能力。这也意味着,狩猎和寻找水源时会出现一定程度的缺水,反过来也表明,体能和认知能力的表现也会出现一定程度的脱水。鉴于目前对维持体内水分以提高成绩的看法,有必要评估与体能和认知能力缺水耐受极限有关的证据。这篇综述探讨了口渴机制以及这种机制可能演变的条件和选择性压力。研究将考虑口渴机制如何影响我们的体能和认知能力。综述认为,智人对缺水和口渴感知形成了适当的耐受力,其安全系数可防止身体和认知能力下降到抑制纠正行动的地步。这将提供一种选择性优势,使其能够在缺水时期寻找水源并充分发挥作用。
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Evolution of the thirst mechanism in Homo: The need and limitations of thirst and hydration

There is a view that the perception of thirst and actual body fluid balance may affect cognitive and exercise performance. The evolutionary evidence suggests that our survival was dependent on our ability to sweat profusely when hunting during the heat of the day (persistence hunting), so if water deficits were not tolerated, consequently the thirst mechanism would limit our persistence hunting capability. This also means that hunting and searching for water was undertaken with some extent of water deficit, and in turn suggests that performance; physical and cognitive, was conducted with a degree of dehydration. Given the current views on the maintenance of body water for performance, there is a need to evaluate the evidence relating to tolerance limits for water deficits with respect to both physical and cognitive performance. This review considers the thirst mechanism and the conditions and selective pressures under which this might have evolved. Consideration will be given to how the thirst mechanism influences our physical and cognitive performance. The review suggests that Homo developed appropriate tolerances for water deficits and thirst perception, with a safety margin that prevented detrimental declines in physical and cognitive performance to the point of inhibiting corrective action. This would have offered a selective advantage, enabling the search for water and functioning adequately during periods of water scarcity.

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来源期刊
CiteScore
5.00
自引率
4.30%
发文量
155
审稿时长
3 months
期刊介绍: Part A: Molecular & Integrative Physiology of Comparative Biochemistry and Physiology. This journal covers molecular, cellular, integrative, and ecological physiology. Topics include bioenergetics, circulation, development, excretion, ion regulation, endocrinology, neurobiology, nutrition, respiration, and thermal biology. Study on regulatory mechanisms at any level of organization such as signal transduction and cellular interaction and control of behavior are also published.
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