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rdf:type
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Description
| - It has been shown on various animal taxa that magnetic compass behavior depends on presence and wavelength of light [reviewed in 1,2]. Crucial role of short wavelength half of spectrum in magnetoreception is consistent with process of constitution of radical pairs consisting of cofactor flavin (FAD) and protein Cryptochrome (Cry). The investigation of light wavelength and intensity thresholds for magnetic sensing in vivo gives important data underpinning experimental identification of radical partners. To date, only fruitfly and birds wavelength limits were reported (<420 nm [2] and <565 nm [reviewed in 3] respectively) yet generally without mapping of color-specific intensity thresholds throughout the spectrum. Here, we tested spontaneous reaction to rotations of geomagnetic horizontal vector - magnetically induced restlessness of German cockroach (Blattella germanica ) under 365, 385, 405, 466 and 520 nm lights and defined respective light intensity thresholds of magnetosensitive behavior.
- It has been shown on various animal taxa that magnetic compass behavior depends on presence and wavelength of light [reviewed in 1,2]. Crucial role of short wavelength half of spectrum in magnetoreception is consistent with process of constitution of radical pairs consisting of cofactor flavin (FAD) and protein Cryptochrome (Cry). The investigation of light wavelength and intensity thresholds for magnetic sensing in vivo gives important data underpinning experimental identification of radical partners. To date, only fruitfly and birds wavelength limits were reported (<420 nm [2] and <565 nm [reviewed in 3] respectively) yet generally without mapping of color-specific intensity thresholds throughout the spectrum. Here, we tested spontaneous reaction to rotations of geomagnetic horizontal vector - magnetically induced restlessness of German cockroach (Blattella germanica ) under 365, 385, 405, 466 and 520 nm lights and defined respective light intensity thresholds of magnetosensitive behavior. (en)
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Title
| - Spectral dependence of insect magnetoreception
- Spectral dependence of insect magnetoreception (en)
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skos:prefLabel
| - Spectral dependence of insect magnetoreception
- Spectral dependence of insect magnetoreception (en)
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skos:notation
| - RIV/00216224:14310/14:00073946!RIV15-MSM-14310___
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http://linked.open...avai/riv/aktivita
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http://linked.open...avai/riv/aktivity
| - P(EE2.4.31.0155), P(GC13-11908J)
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http://linked.open...vai/riv/dodaniDat
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http://linked.open...aciTvurceVysledku
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http://linked.open.../riv/druhVysledku
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http://linked.open...iv/duvernostUdaju
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http://linked.open...titaPredkladatele
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http://linked.open...dnocenehoVysledku
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http://linked.open...ai/riv/idVysledku
| - RIV/00216224:14310/14:00073946
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http://linked.open...riv/jazykVysledku
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http://linked.open.../riv/klicovaSlova
| - magnetoreception; insect; behaviour; cryptochrome; cocroach; wavelength; insects behaviour (en)
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http://linked.open.../riv/klicoveSlovo
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http://linked.open...ontrolniKodProRIV
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http://linked.open...in/vavai/riv/obor
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http://linked.open...ichTvurcuVysledku
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http://linked.open...cetTvurcuVysledku
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http://linked.open...vavai/riv/projekt
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http://linked.open...UplatneniVysledku
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http://linked.open...iv/tvurceVysledku
| - Bartoš, Přemysl
- Bazalová, Olga
- Doležel, David
- Kvíčalová, Markéta
- Vácha, Martin
- Netušil, Radek
- Slabý, Pavel
- Lee, How-Jing
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http://localhost/t...ganizacniJednotka
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