Energy Allocation Explains How Protozoan Phenotypic Traits Change in Response to Temperature and Resource Supply
Andrea Perna, Enrico S. Rivoli, Julia Reiss, Daniel M. PerkinsABSTRACT
To survive and reproduce, living organisms need to maintain an efficient balance between energy intake and energy expenditure. Changes in environmental conditions can disrupt previously efficient energy allocation strategies, and organisms are required to change their behaviour, physiology, or morphology to cope with the new environment. However, how multiple phenotypic traits interact with one another and with environmental conditions to shape energy allocation remains poorly understood. To better understand this type of phenotype‐environment interactions, we develop a predictive framework, grounded in energetic and biophysical principles that allows us to make predictions on how metabolic rate and movement speed should change in response to environmental temperature and resource supply, differentiating between short‐term, acute exposure to novel conditions and longer‐term exposure that allows acclimation or adaptation. We tested these predictions by exposing axenic populations of the ciliate