Light-dependent magnetic compass orientation in amphibians and insects: candidate receptors and candidate molecular mechanisms.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 20124357.
- Also identified by DOI 10.1098/rsif.2009.0459.focus and PMC identifier 2843995.
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Abstract
Magnetic compass orientation by amphibians, and some insects, is mediated by a light-dependent magnetoreception mechanism. Cryptochrome photopigments, best known for their role in circadian rhythms, are proposed to mediate such responses. In this paper, we explore light-dependent properties of magnetic sensing at three levels: (i) behavioural (wavelength-dependent effects of light on magnetic compass orientation), (ii) physiological (photoreceptors/photopigment systems with properties suggesting a role in magnetoreception), and (iii) molecular (cryptochrome-based and non-cryptochrome-based signalling pathways that are compatible with behavioural responses). Our goal is to identify photoreceptors and signalling pathways that are likely to play a specialized role in magnetoreception in order to definitively answer the question of whether the effects of light on magnetic compass orientation are mediated by a light-dependent magnetoreception mechanism, or instead are due to input from a non-light-dependent (e.g. magnetite-based) magnetoreception mechanism that secondarily interacts with other light-dependent processes.
Medical subject headings
- Amphibians
- Cryptochromes
- Functional Laterality
- Insecta
- Orientation