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One striking effect of low temperature is the disruption of circadian clock function, indicated by dampened or disrupted cycles of many clock components and output genes, not only in Arabidopsis [1], but also in a tree [23], [24].
Many clock components represent transcriptional regulators that are organized in transcription-translation feedback loops.
In addition, PRR7, PRR5, and TOC1 repress the gene expression of many clock components simultaneously around the end of the day and the beginning of the night.
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Recent works has shown that many of these circadian clock components can also be found in diverse plant species including rice, soybean, maize, and poplar [ 22- 25].
It also suggests that many of these post-translational modifiers may in fact be considered clock components themselves.
There are so many clock management disasters.
Also, particular mode consumes many clock cycles.
They can search for other clock components by looking for proteins CLOCK interacts with and genes that it activates.
Whether molecular clock components are good indicators for SCN aging remain unclear.
Next, we obtained a focused siRNA library comprising several known clock components.
We then assessed whether oFbxl proteins affect the degradation kinetics of molecular clock components.
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