Phenotypic flexibility in shorebirds has been studied mainly in the context of adjustments to migration and to quality of food; little is known on how birds adjust their phenotype to harsh winter conditions. We showed earlier that red knot (Calidris canutus islandica) can acclimate to cold by elevating body mass. This goes together with larger pectoral muscles, i.e., greater shivering machinery, and thus, better thermogenic capacity. Here, we present results of a yearlong experiment with indoor captive knots to determine whether this strategy is part of their natural seasonal phenotypic cycle. We maintained birds under three thermal regimes: constant cold (5 degrees C), constant thermoneutrality (25 degrees C) and natural seasonal variation...
Pre-flight fuelling rates in free-living red knots Calidris canutus, a specialized long-distance mig...
1. Seasonal carry-over effects may be important structuring components of avian life-history cycles....
Resident temperate passerines adjust their phenotypes to cope with winter constraints, with peak per...
Phenotypic flexibility in shorebirds has been studied mainly in the context of adjustments to migrat...
Phenotypic flexibility in shorebirds has been studied mainly in the context of adjustments to migrat...
Phenotypic flexibility in shorebirds has been studied mainly in the context of adjustments to migrat...
Seasonal acclimatization and experimental acclimation to cold in birds typically results from increa...
In the calidrine sandpiper red knot (Calidris canutus), the weeks preceding takeoff for long-distanc...
Phenotypic flexibility is a phenomenon where physiological functions in animals are reversibly adjus...
We studied differences in body composition and basal metabolic rate (BMR, measured in postabsorptive...
We studied differences in body composition and basal metabolic rate (BMR, measured in postabsorptive...
Using red knots (Calidris canutus) as a model, we determined how changes in mass and metabolic activ...
rine sandpiper red knot (Calidris canutus), the weeks preceding takeoff for long-distance migration ...
Using red knots (Calidris canutus) as a model, we determined how changes in mass and metabolic activ...
Knots Calidris canutus live highly seasonal lives, breeding solitarily on high arctic tundra and spe...
Pre-flight fuelling rates in free-living red knots Calidris canutus, a specialized long-distance mig...
1. Seasonal carry-over effects may be important structuring components of avian life-history cycles....
Resident temperate passerines adjust their phenotypes to cope with winter constraints, with peak per...
Phenotypic flexibility in shorebirds has been studied mainly in the context of adjustments to migrat...
Phenotypic flexibility in shorebirds has been studied mainly in the context of adjustments to migrat...
Phenotypic flexibility in shorebirds has been studied mainly in the context of adjustments to migrat...
Seasonal acclimatization and experimental acclimation to cold in birds typically results from increa...
In the calidrine sandpiper red knot (Calidris canutus), the weeks preceding takeoff for long-distanc...
Phenotypic flexibility is a phenomenon where physiological functions in animals are reversibly adjus...
We studied differences in body composition and basal metabolic rate (BMR, measured in postabsorptive...
We studied differences in body composition and basal metabolic rate (BMR, measured in postabsorptive...
Using red knots (Calidris canutus) as a model, we determined how changes in mass and metabolic activ...
rine sandpiper red knot (Calidris canutus), the weeks preceding takeoff for long-distance migration ...
Using red knots (Calidris canutus) as a model, we determined how changes in mass and metabolic activ...
Knots Calidris canutus live highly seasonal lives, breeding solitarily on high arctic tundra and spe...
Pre-flight fuelling rates in free-living red knots Calidris canutus, a specialized long-distance mig...
1. Seasonal carry-over effects may be important structuring components of avian life-history cycles....
Resident temperate passerines adjust their phenotypes to cope with winter constraints, with peak per...