Annual Plant Reviews, Endogenous Plant Rhythms: Volume 21 by Anthony J. W. Hall, Harriet G. McWatters

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By Anthony J. W. Hall, Harriet G. McWatters

Our wisdom of the circadian clock in crops has complex significantly in recent times and we've got a clearer view of the biochemical techniques making up its mechanism. contemporary paintings presents perception into the principal position performed by means of the circadian procedure within the rules of many elements of metabolism. The a number of structures focused on photoreception were made up our minds, resulting in an realizing of ways mild entrains the inner organic clock to the normal cycle of day and evening, and the way this affects on key occasions within the plant lifecycle, akin to the photoperiodic law of flowering.

This e-book offers a latest review of endogenous plant rhythms for researchers and pros within the plant sciences. it is going to additionally function a worthy resource of reference for the broader circadian community.

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Extra resources for Annual Plant Reviews, Endogenous Plant Rhythms: Volume 21

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Both CCA1 and LHY were thus shown to contribute to the circadian system in Arabidopsis. The photoperiodic insensitivity of the original mutants is thought to be a consequence of a defect in the circadian clock. The gene expressions of CCA1/LHY and TOC1 oscillate rhythmically with different phase from each other, with a dawn peak for CCA1/LHY and a dusk peak for TOC1. , 2001). Thus, a CCA1/LHY-TOC1 feedback-loop model has been proposed as a central oscillator of angiosperms (see Chapter 1). , 2000).

Mizuno, T. (2002a) Aberrant expression of the light-inducible and circadian-regulated APRR9 gene belonging to the circadian-associated APRR1/TOC1 quintet results in the phenotype of early flowering in Arabidopsis thaliana. , 43, 833–843. , Kojima, M. & Mizuno, T. , 41, 1002–1012. , Yamashino, T. & Mizuno, T. (2002b) The APRR1/TOC1 quintet implicated in circadian rhythms of Arabidopsis thaliana: II. , 43, 118–122. J. & Rosbash, M. (2001) Microarray analysis and organization of circadian gene expression in Drosophila 36.

Grunstein, M. (2003) Genomewide histone acetylation microarrays. Methods, 31, 83–89. Rosbash, M. C. (1989) The molecular biology of circadian rhythms. Neuron, 3, 387–398. B. X. (2001) Characterization of the ethanol-inducible alc gene-expression system in Arabidopsis thaliana. , 28, 225–235. A. R. (2004) The Arabidopsis thaliana clock. J. Biol. Rhythms, 19, 425–435. X. B. (1998) Characterization of the ethanol-inducible alc gene expression system for transgenic plants. , 16, 127–132. , Yamashino, T.

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