An expressed sequence tag-based microarray was used to profile genome expression underlying light control of Arabidopsis development. Qualitatively similar gene expression profiles were observed among seedlings grown in different light qualities, Including far-red, red, and blue light, which are mediated primarily by phytochrome A, phytochrome B, and the cryptochromes, respectively. Furthermore, light/dark transitions also triggered similar differential genome expression profiles. Most light treatments also resulted in distinct expression profiles in small fractions of the expressed sequence tags examined. The similarly regulated genes in all light conditions were estimated to account for approximately one-third of the genome, with three-fi...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
Red light, acting through the phytochromes, controls numerous aspects of plant development. Many of ...
Light is one of the key environmental signals regulating plant growth and development. Therefore, un...
An expressed sequence tag-based microarray was used to profile genome expression underlying light co...
Peschke F, Kretsch T. Genome-wide analysis of light-dependent transcript accumulation patterns durin...
A microarray based on PCR amplicons of 1,864 confirmed and predicted Arabidopsis transcription facto...
Genome-wide 70-mer oligonucleotide microarrays of rice (Oryza sativa) and Arabidopsis thaliana were ...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
Red light, acting through the phytochromes, controls numerous aspects of plant development. Many of ...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
Red light, acting through the phytochromes, controls numerous aspects of plant development. Many of ...
Light is one of the key environmental signals regulating plant growth and development. Therefore, un...
An expressed sequence tag-based microarray was used to profile genome expression underlying light co...
Peschke F, Kretsch T. Genome-wide analysis of light-dependent transcript accumulation patterns durin...
A microarray based on PCR amplicons of 1,864 confirmed and predicted Arabidopsis transcription facto...
Genome-wide 70-mer oligonucleotide microarrays of rice (Oryza sativa) and Arabidopsis thaliana were ...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
Red light, acting through the phytochromes, controls numerous aspects of plant development. Many of ...
In darkness, shoot apex growth is repressed, but it becomes rapidly activated by light. We show that...
Red light, acting through the phytochromes, controls numerous aspects of plant development. Many of ...
Light is one of the key environmental signals regulating plant growth and development. Therefore, un...