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对环境变化的代谢率可塑性的生态和进化后果。

Ecological and evolutionary consequences of metabolic rate plasticity in response to environmental change.

机构信息

1 Institute of Biodiversity, Animal Health and Comparative Medicine, MVLS, University of Glasgow , Graham Kerr Building, Glasgow G12 8QQ , UK.

2 DTU Aqua: National Institute of Aquatic Resources , Kemitorvet Building 202, 2800 Kgs. Lyngby , Denmark.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2019 Mar 18;374(1768):20180180. doi: 10.1098/rstb.2018.0180.

Abstract

Basal or standard metabolic rate reflects the minimum amount of energy required to maintain body processes, while the maximum metabolic rate sets the ceiling for aerobic work. There is typically up to three-fold intraspecific variation in both minimal and maximal rates of metabolism, even after controlling for size, sex and age; these differences are consistent over time within a given context, but both minimal and maximal metabolic rates are plastic and can vary in response to changing environments. Here we explore the causes of intraspecific and phenotypic variation at the organ, tissue and mitochondrial levels. We highlight the growing evidence that individuals differ predictably in the flexibility of their metabolic rates and in the extent to which they can suppress minimal metabolism when food is limiting but increase the capacity for aerobic metabolism when a high work rate is beneficial. It is unclear why this intraspecific variation in metabolic flexibility persists-possibly because of trade-offs with the flexibility of other traits-but it has consequences for the ability of populations to respond to a changing world. It is clear that metabolic rates are targets of selection, but more research is needed on the fitness consequences of rates of metabolism and their plasticity at different life stages, especially in natural conditions. This article is part of the theme issue 'The role of plasticity in phenotypic adaptation to rapid environmental change'.

摘要

基础或标准代谢率反映了维持身体过程所需的最低能量,而最大代谢率则设定了有氧工作的上限。即使在控制了体型、性别和年龄之后,最小和最大代谢率在种内也会有高达三倍的变化;这些差异在给定的环境中是一致的,但最小和最大代谢率都是可塑的,可以根据环境的变化而变化。在这里,我们探讨了器官、组织和线粒体水平上种内和表型变异的原因。我们强调了越来越多的证据表明,个体的代谢率灵活性和在食物有限时抑制最小代谢率的程度以及在高工作率有益时增加有氧代谢能力的程度存在可预测的差异。目前还不清楚为什么这种代谢灵活性的种内变异会持续存在——可能是因为与其他特征的灵活性存在权衡关系——但它会影响到种群适应不断变化的世界的能力。很明显,代谢率是选择的目标,但需要更多的研究来了解代谢率及其在不同生命阶段的可塑性的适应后果,特别是在自然条件下。本文是主题为“可塑性在快速环境变化下对表型适应的作用”的一部分。

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