The role of the heart in the evolution of aerobic performance

Author:

Scott Graham R.1ORCID,Garvey Kayla M.1,Wearing Oliver H.23ORCID

Affiliation:

1. McMaster University 1 Department of Biology , , 1280 Main Street West, Hamilton, ON , Canada , L8S 4K1

2. University of British Columbia 2 Department of Cellular and Physiological Sciences , , Vancouver, BC , Canada , V6T 2A1

3. Centre for Heart, Lung and Vascular Health, University of British Columbia Okanagan 3 , Kelowna, BC , Canada , V1V 1V7

Abstract

ABSTRACT Aerobic metabolism underlies vital traits such as locomotion and thermogenesis, and aerobic capacity influences fitness in many animals. The heart is a key determinant of aerobic capacity, but the relative influence of cardiac output versus other steps in the O2 transport pathway remains contentious. In this Commentary, we consider this issue by examining the mechanistic basis for adaptive increases in aerobic capacity (thermogenic V̇O2,max; also called summit metabolism) in deer mice (Peromyscus maniculatus) native to high altitude. Thermogenic V̇O2,max is increased by acclimation to cold hypoxia (simulating high-altitude conditions), and high-altitude populations generally have greater V̇O2,max than their low-altitude counterparts. This plastic and evolved variation in V̇O2,max is associated with corresponding variation in maximal cardiac output, along with variation in other traits across the O2 pathway (e.g. arterial O2 saturation, blood haemoglobin content and O2 affinity, tissue O2 extraction, tissue oxidative capacity). By applying fundamental principles of gas exchange, we show that the relative influence of cardiac output on V̇O2,max depends on the O2 diffusing capacity of thermogenic tissues (skeletal muscles and brown adipose tissues). Functional interactions between cardiac output and blood haemoglobin content determine circulatory O2 delivery and thus affect V̇O2,max, particularly in high-altitude environments where erythropoiesis can increase haematocrit and blood viscosity. There may also be functional linkages between cardiac output and tissue O2 diffusion due to the role of blood flow in determining capillary haematocrit and red blood cell flux. Therefore, the functional interactions between cardiac output and other traits in the O2 pathway underlie the adaptive evolution of aerobic capacities.

Funder

Natural Sciences and Engineering Research Council of Canada

Canada Research Chairs

Ontario Graduate Scholarships

University of British Columbia

Publisher

The Company of Biologists

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. ECR Spotlight – Kayla Garvey;Journal of Experimental Biology;2024-07-24

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