Abstract: CBF (C-repeat binding factor) transcription factors show high expression levels in response to cold; moreover, they play a key regulatory role in cold acclimation processes. Recently, however, more and more information has led to the conclusion that, apart from cold, light—including its spectra—also has a crucial role in regulating CBF expression. Earlier, studies established that the expression patterns of some of these regulatory genes follow circadian rhythms. To understand more of this complex acclimation process, we studied the expression patterns of the signal transducing pathways, including signal perception, the circadian clock and phospholipid signalling pathways, upstream of the CBF gene regulatory hub. To exclude...
The circadian clock is a complex transcriptional network that regulates gene expression in anticipat...
Cold acclimation of winter cereals and other winter hardy species is a prerequisite to increase subs...
In the last decade, the view of circadian oscillators has expanded from transcriptional feedback to ...
CBF (C-repeat binding factor) transcription factors show high expression levels in response to cold;...
CBF (C-repeat binding factor) transcription factors are one of the most studied regulators in plants...
Low temperature adversely affects crop yields by restraining plant growth and productivity. Most tem...
SummaryCircadian clocks allow organisms to anticipate daily changes in the environment to enhance ov...
Cold acclimation ability is crucial in the winter survival of cereals. In this process CBF transcrip...
Daily rhythms in gene expression are thought to allow organisms to co-ordinate internal processes wi...
Micro- and macroclimatic changes fundamentally determine growth rate, development, crop production a...
In plants, low temperature causes massive transcriptional changes, many of which are presumed to be ...
Circadian clocks confer advantages by restricting biological processes to certain times of day throu...
The circadian clock represents a critical regulatory network, which allows plants to anticipate envi...
The plant circadian clock is an internal timekeeper that coordinates biological processes with daily...
In plants, there is a large overlap between cold and circadian regulated genes and in Arabidopsis, w...
The circadian clock is a complex transcriptional network that regulates gene expression in anticipat...
Cold acclimation of winter cereals and other winter hardy species is a prerequisite to increase subs...
In the last decade, the view of circadian oscillators has expanded from transcriptional feedback to ...
CBF (C-repeat binding factor) transcription factors show high expression levels in response to cold;...
CBF (C-repeat binding factor) transcription factors are one of the most studied regulators in plants...
Low temperature adversely affects crop yields by restraining plant growth and productivity. Most tem...
SummaryCircadian clocks allow organisms to anticipate daily changes in the environment to enhance ov...
Cold acclimation ability is crucial in the winter survival of cereals. In this process CBF transcrip...
Daily rhythms in gene expression are thought to allow organisms to co-ordinate internal processes wi...
Micro- and macroclimatic changes fundamentally determine growth rate, development, crop production a...
In plants, low temperature causes massive transcriptional changes, many of which are presumed to be ...
Circadian clocks confer advantages by restricting biological processes to certain times of day throu...
The circadian clock represents a critical regulatory network, which allows plants to anticipate envi...
The plant circadian clock is an internal timekeeper that coordinates biological processes with daily...
In plants, there is a large overlap between cold and circadian regulated genes and in Arabidopsis, w...
The circadian clock is a complex transcriptional network that regulates gene expression in anticipat...
Cold acclimation of winter cereals and other winter hardy species is a prerequisite to increase subs...
In the last decade, the view of circadian oscillators has expanded from transcriptional feedback to ...