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Homing pigeon navigation relies on superparamagnetic macrophages under overcast conditions.

Science (New York, N.Y.)

Authors: Clivia Lisowski, Michael Quetting, Daniela Klaus, Lisa Lazarevski, Lea Seep, Maximilian Germer, Jian Li, Inge Müller, Daniel Zuniga, Wolfgang Fiedler, Dina K N Dechmann, Kasper Thorup, Jan Hasenauer, Lars Fester, Stefanie Kuerten, Michael Farle, Ulf Wiedwald, Martin Wikelski, Christian Kurts

Birds use a variety of navigational strategies, including the geomagnetic field, especially when other cues are not available, such as under overcast or nocturnal conditions. Magnetite particles in the beak, cryptochromes in the eye, cellular ion-channel alterations, and changes in the vestibular system have been proposed to explain magnetoreception, but the exact mechanisms remain debated. Here, we used physical, morphological, functional, and genomic assays to identify the presence of superparamagnetic macrophages in the liver. We found that after macrophage depletion, pigeons flying under overcast conditions lacked their usual orientation capabilities. Orientation was unimpaired in birds without macrophages when the sun was visible, suggesting that this was their primary cue. We propose that in homing pigeons, superparamagnetic macrophages in the liver are required for finding magnetic direction.

PMID: 42207892

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