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Scientific Reports|November 2, 2018
Two CONSTANS-LIKE genes jointly control flowering time in beetNadine Dally, Maike Eckel, Alfred Batschauer, et al.
Photochemistry and Photobiology|July 29, 2015
Biochemical Characterization of the DASH-Type Cryptochrome CryD From Fusarium fujikuroiMarta Castrillo, Adrian Bernhardt, Javier Ávalos, et al.
The Journal of Biological Chemistry|June 22, 2017
Hyperactivity of the Arabidopsis cryptochrome (cry1) L407F mutant is caused by a structural alteration close to the cry1 ATP-binding siteChristian Orth, Nils Niemann, Lars Hennig, et al.
Journal of Molecular Biology|December 26, 2006
Cryptochrome 3 from Arabidopsis thaliana: structural and functional analysis of its complex with a folate light antennaTobias Klar, Richard Pokorny, Julia Moldt, et al.
The Journal of Biological Chemistry|May 23, 2014
Structural and evolutionary aspects of antenna chromophore usage by class II photolyasesStephan Kiontke, Petra Gnau, Reinhard Haselsberger, et al.
Trends in Plant Science|October 1, 2008
Transposing phytochrome into the nucleusChristian Fankhauser, Meng Chen
Current Biology : CB|August 25, 2012
Plant development: should I stop or should I grow?Séverine Lorrain, Christian Fankhauser
Genes & Development|May 18, 2011
Light-regulated interactions with SPA proteins underlie cryptochrome-mediated gene expressionChristian Fankhauser, Roman Ulm
Photochemical & Photobiological Sciences : Official Journal of the European Photochemistry Association and the European Society for Photobiology|June 2, 2004
PKS1 and PKS2 affect the phyA state in etiolated Arabidopsis seedlingsVitaly Sineshchekov, Christian Fankhauser
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