Calibration of the magnetic compass of a migratory bird by celestial rotation

MIGRATORY birds use a variety of environmental stimuli in orientation. Species that migrate primarily at night can use compasses based on the geomagnetic field, stars, the Sun and patterns of skylight polarization1–4. These compass mechanisms can interact both when migratory birds make day-to-day orientation decisions5 and during their ontogeny in young birds6,7. All of the known compasses used by migratory birds seem to be modifiable by experience during early development. For example, a functional magnetic compass develops in birds that have never seen the sky8–11. But the preferred direction of orientation by the magnetic compass may be modified during the first three months of life by exposing naive birds to the sky under conditions in which magnetic directions differ substantially from compass directions indicated by the Sun and stars (true or geographic directions)6,9,10. For hand-raised Savannah sparrows (Passerculus sandwichensis), experience with either the clear daytime or night sky is sufficient to effect this calibration of the magnetic compass11. We therefore proposed that celestial rotation, which provides a source of geographic directions both day and night, is the calibrating reference. Here we report that the rotation of an artificial pattern of 'stars' calibrates the preferred direction of magnetic orientation of young Savannah sparrows.

[1]  F. Moore Integration of environmental stimuli in the migratory orientation of the savannah sparrow (Passerculus sandwichensis) , 1985, Animal Behaviour.

[2]  W. Wiltschko,et al.  Magnetic versus celestial orientation in migrating birds. , 1988, Trends in ecology & evolution.

[3]  K. Able,et al.  Ontogeny of migratory orientation in the savannah sparrow, Passerculus sandwichensis: Mechanisms at sunset , 1990, Animal Behaviour.

[4]  V. Bingman Magnetic Field Orientation of Migratory Savannah Sparrows With Different First Summer Experience , 1983 .

[5]  F. Moore SUNSET AND THE ORIENTATION BEHAVIOUR OF MIGRATING BIRDS , 1987 .

[6]  K. Able,et al.  The Development of Orientation and Navigation Behavior in Birds , 1987, The Quarterly Review of Biology.

[7]  W. Wiltschko Compasses used by birds , 1983 .

[8]  S T Emlen,et al.  Celestial Rotation: Its Importance in the Development of Migratory Orientation , 1970, Science.

[9]  F. Moore Solar cues in the migratory orientation of the Savannah sparrow, Passerculus sandwichensis , 1980, Animal Behaviour.

[10]  K. Able,et al.  An alternative method for the analysis of Emlen funnel data , 1986 .

[11]  Mary Ann Rankin,et al.  Migration : mechanisms and adaptive significance , 1985 .

[12]  R. Baker,et al.  Bird Navigation: The Solution of a Mystery? , 1984 .

[13]  Stephen T. Emlen,et al.  A TECHNIQUE FOR RECORDING MIGRATORY ORIENTATION OF CAPTIVE BIRDS , 1966 .

[14]  K. Able,et al.  Ontogeny of migratory orientation in the savannah sparrow, Passerculus sandwichensis: calibration of the magnetic compass , 1990, Animal Behaviour.

[15]  E. Batschelet Circular statistics in biology , 1981 .