International audience1. Energy saving is often suggested as the basis of a resource trade-off between immunocompetence and other fitness-relevant traits. This suggests that the energetic cost of an immune response is significant and sufficient to force trade-offs. To date, few studies have investigated the energetic cost of the humoral component of the immune system in birds and furthermore, existing results are contradictory. 2. We addressed this question through two experiments. In experiment 1, the basal metabolic rate (BMR) of Collared Doves, Streptopelia decaocto , challenged with sheep red blood cells (SRBC) was compared with the BMR of control birds. The energetic cost of immunity on host life-history strategies was compared with an...
Growing feathers and mounting immune responses are both energetically costly for birds. According to...
International audience1. Energy expenditure in wild animals can be limited (i) intrinsically by phys...
In response to unbalanced energy budgets, animals must allocate resources among competing physiologi...
International audience1. Energy saving is often suggested as the basis of a resource trade-off betwe...
1. Recently, there has been much interest in physiological trade-offs between parasite resistance an...
It is assumed that there is a trade-off between the costs allocated to mounting an immune defence an...
The energetic cost of immune responses has been proposed to be an important basis for trade-offs bet...
Activation of an immune response (IR) upon exposure to pathogens is crucial to ensure adequate organ...
The energy cost of adaptive immune activation in endotherms is typically quantified from changes in ...
Immune defences are undoubtedly of great benefit to the host, reducing the impact of infectious orga...
This article provides a brief historical perspective on the integration of physiology into the conce...
Pathogen challenges and host immune defenses can have substantial impact on life history patterns of...
We measured the costs of mounting a humoral immune response using two novel antigens (tetanus and di...
A central assumption of theories of the ecology and evolution of immunological defence is that defen...
We measured the costs of mounting a humoral immune response using two novel antigens (tetanus and di...
Growing feathers and mounting immune responses are both energetically costly for birds. According to...
International audience1. Energy expenditure in wild animals can be limited (i) intrinsically by phys...
In response to unbalanced energy budgets, animals must allocate resources among competing physiologi...
International audience1. Energy saving is often suggested as the basis of a resource trade-off betwe...
1. Recently, there has been much interest in physiological trade-offs between parasite resistance an...
It is assumed that there is a trade-off between the costs allocated to mounting an immune defence an...
The energetic cost of immune responses has been proposed to be an important basis for trade-offs bet...
Activation of an immune response (IR) upon exposure to pathogens is crucial to ensure adequate organ...
The energy cost of adaptive immune activation in endotherms is typically quantified from changes in ...
Immune defences are undoubtedly of great benefit to the host, reducing the impact of infectious orga...
This article provides a brief historical perspective on the integration of physiology into the conce...
Pathogen challenges and host immune defenses can have substantial impact on life history patterns of...
We measured the costs of mounting a humoral immune response using two novel antigens (tetanus and di...
A central assumption of theories of the ecology and evolution of immunological defence is that defen...
We measured the costs of mounting a humoral immune response using two novel antigens (tetanus and di...
Growing feathers and mounting immune responses are both energetically costly for birds. According to...
International audience1. Energy expenditure in wild animals can be limited (i) intrinsically by phys...
In response to unbalanced energy budgets, animals must allocate resources among competing physiologi...