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Magnetoreception system in honeybees (Apis mellifera)
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Magnetoreception system in honeybees (Apis mellifera)

Chin-Yuan Hsu, Fu-Yao Ko, Chia-Wei Li, Kuni FannJuh-Tzeng Lue
PLoS ONE, 卷.2(4), e395
04/2007
PMID: 17460762

摘要

Biochemistry Genetics and Molecular Biology (all) Agricultural and Biological Sciences (all)
Honeybees (Apis mellifera) undergo iron biomineralization, providing the basis for magnetoreception. We showed earlier the resence of superparamagnetic magnetite in iron granules formed in honeybees, and subscribed to the notion that external magnetic fields may cause expansion or contraction of the superparamagnetic particles in an orientation-specific manner, relaying the signal via cytoskeleton (Hsu and Li 1994). In this study, we established a size-density purification procedure, with which quantitative amount of iron granules was obtained from honey bee trophocytes and characterized; the density of iron granules was determined to be 1.25 g/cm 3 . While we confirmed the presence of superparamagnetic magnetite in the iron granules, we observed changes in the size of the magnetic granules in the trophycytes upon applying additional, magnetic, field to the cells. A concomitant release of calcium ion was observed by confocal microscope. This size fluctuation triggered the increase of intracellular Ca -2 , which was inhibited by colchicines and latrunculin B, known to be blockers for microtubule and microfilament syntheses, respectively. The associated cytoskeleton may thus relay the magnetosignal, initiating a neural response. A model for the mechanism of magnetoreception in honeybees is proposed, which may be applicable to most, if not all, magnetotactic organisms. © 2007 Hsu et al.

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