The size of digestive organs can be rapidly and reversibly adjusted to ecological circumstances, but such phenotypic flexibility comes at a cost. Here, we test how the gizzard mass of a long-distance migrant, the red knot (Calidris canutus), is adjusted to (i) local climate, (ii) prey quality and (iii) migratory fuelling demands. For eight sites around the world (both wintering and stopover sites), we assembled data on gizzard masses of free-living red knots, the quality of their prey and the local climate. Using an energetic cost–benefit approach, we predicted the gizzard size required for fastest fuelling (net rate-maximization, i.e. expected during migration) and the gizzard size required to balance daily energy budgets (satisficing, exp...
Long-distance migration, and the study of the migrants who undertake these journeys, has fascinated ...
Afro-Siberian Red Knots Calidris canutus canutus use the western Dutch Wadden Sea as a refuelling ar...
Summary 1. Rate-maximizing foragers that only divide their time between searching and handling prey ...
The size of digestive organs can be rapidly and reversibly adjusted to ecological circumstances, but...
We carried out an observational and experimental study to decipher how resource characteristics, in ...
We carried out an observational and experimental study to decipher how resource characteristics, in ...
Assuming that animals respond optimally to environmental changes, both behavior and physiology shoul...
Reversible phenotypic changes, such as those observed in nutritional organs of long-distance migrant...
Reversible phenotypic changes, such as those observed in nutritional organs of long-distance migrant...
1. When prey occur at high densities, energy assimilation rates are generally constrained by rates o...
Assuming that animals respond optimally to environmental changes, both behavior and physiology shoul...
We carried out an observational and experimental study to decipher how resource characteristics, in ...
Aiming to interpret functionally the large variation in gizzard masses of red knots Calidris canutus...
Reversible phenotypic changes, such as those observed in nutritional organs of long-distance migrant...
Aiming to interpret functionally the large variation in gizzard masses of red knots Calidris canutus...
Long-distance migration, and the study of the migrants who undertake these journeys, has fascinated ...
Afro-Siberian Red Knots Calidris canutus canutus use the western Dutch Wadden Sea as a refuelling ar...
Summary 1. Rate-maximizing foragers that only divide their time between searching and handling prey ...
The size of digestive organs can be rapidly and reversibly adjusted to ecological circumstances, but...
We carried out an observational and experimental study to decipher how resource characteristics, in ...
We carried out an observational and experimental study to decipher how resource characteristics, in ...
Assuming that animals respond optimally to environmental changes, both behavior and physiology shoul...
Reversible phenotypic changes, such as those observed in nutritional organs of long-distance migrant...
Reversible phenotypic changes, such as those observed in nutritional organs of long-distance migrant...
1. When prey occur at high densities, energy assimilation rates are generally constrained by rates o...
Assuming that animals respond optimally to environmental changes, both behavior and physiology shoul...
We carried out an observational and experimental study to decipher how resource characteristics, in ...
Aiming to interpret functionally the large variation in gizzard masses of red knots Calidris canutus...
Reversible phenotypic changes, such as those observed in nutritional organs of long-distance migrant...
Aiming to interpret functionally the large variation in gizzard masses of red knots Calidris canutus...
Long-distance migration, and the study of the migrants who undertake these journeys, has fascinated ...
Afro-Siberian Red Knots Calidris canutus canutus use the western Dutch Wadden Sea as a refuelling ar...
Summary 1. Rate-maximizing foragers that only divide their time between searching and handling prey ...