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What causes intraspecific variation in resting metabolic rate and what are its ecological consequences

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TLDR
It is demonstrated that diverse factors, such as genotypes, maternal effects, early developmental conditions and personality differences contribute to variation in individual RMR, and that the fitness consequences of a given RMR may be context-dependent.
Abstract
Individual differences in the energy cost of self-maintenance (resting metabolic rate, RMR) are substantial and the focus of an emerging research area. These differences may influence fitness because self-maintenance is considered as a life-history component along with growth and reproduction. In this review, we ask why do some individuals have two to three times the ‘maintenance costs’ of conspecifics, and what are the fitness consequences? Using evidence from a range of species, we demonstrate that diverse factors, such as genotypes, maternal effects, early developmental conditions and personality differences contribute to variation in individual RMR. We review evidence that RMR is linked with fitness, showing correlations with traits such as growth and survival. However, these relationships are modulated by environmental conditions (e.g. food supply), suggesting that the fitness consequences of a given RMR may be context-dependent. Then, using empirical examples, we discuss broad-scale reasons why variation in RMR might persist in natural populations, including the role of both spatial and temporal variation in selection pressures and trans-generational effects. To conclude, we discuss experimental approaches that will enable more rigorous examination of the causes and consequences of individual variation in this key physiological trait.

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Performance, Personality, and Energetics: Correlation, Causation, and Mechanism*

TL;DR: The integration of performance traits within the pace-of-life-syndrome concept has the potential to fill a logical gap between the context dependency of selection and how energetics and personality are expected to interrelate.
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Environmental stressors alter relationships between physiology and behaviour.

TL;DR: It is argued that a major source of this inconsistency is the influence of environmental stressors, which seem capable of revealing, masking, or modulating covariation in physiological and behavioural traits.
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Measurement and relevance of maximum metabolic rate in fishes.

TL;DR: Various techniques used to elicit and measure maximum (aerobic) metabolic rate in different fish species with contrasting lifestyles are outlined and the relevance of MMR to the ecology, fitness and climate change resilience of fishes is discussed.
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Does individual variation in metabolic phenotype predict fish behaviour and performance

TL;DR: It is suggested that a more integrative approach is now required to fully understand how the environment can modulate individual performance via effects on metabolic phenotypes encompassing SMR, MMR and AS.
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Is metabolic rate a universal 'pacemaker' for biological processes?

TL;DR: It is argued that a comprehensive understanding of the pace of life must include how biological activities depend on both energy and information and their environmentally sensitive interaction, supported by extensive evidence showing that hormones and other regulatory factors and signalling systems coordinate the processes of growth, metabolism and food intake in adaptive ways that are responsive to an organism's internal and external conditions.
References
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Journal ArticleDOI

The evolution of life histories

TL;DR: In this article, age and size at maturity at maturity number and size of offspring Reproductive lifespan and ageing are discussed. But the authors focus on the effects of age and stage structure on fertility.
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Aging: A Theory Based on Free Radical and Radiation Chemistry

TL;DR: It seems possible that one factor in aging may be related to deleterious side attacks of free radicals (which are normally produced in the course of cellular metabolism) on cell constituents.
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Toward a metabolic theory of ecology

TL;DR: This work has developed a quantitative theory for how metabolic rate varies with body size and temperature, and predicts how metabolic theory predicts how this rate controls ecological processes at all levels of organization from individuals to the biosphere.
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Behavioral syndromes: an ecological and evolutionary overview.

TL;DR: The existence of behavioral syndromes focuses the attention of behavioral ecologists on limited (less than optimal) behavioral plasticity and behavioral carryovers across situations, rather than on optimal plasticity in each isolated situation.
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Cellular energy utilization and molecular origin of standard metabolic rate in mammals

TL;DR: The differences in standard metabolic rate between animals of different body mass and phylogeny appear to be due to proportionate changes in the whole of energy metabolism.
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