AbstractThe phycobilisome (PBS) is a photosynthetic light-harvesting complex in red algae, whose structural genes are separately encoded by both the nuclear and chloroplast genomes. While the expression of PBS genes in both genomes is responsive to environmental changes to modulate light-harvesting efficiency, little is known about how gene expression of the two genomes is coordinated. In this study, we focused on the four nuclear-encoded chloroplast sigma factors to understand aspects of this coordination, and found that SIG2 directs the expression of chloroplast PBS genes in the red alga Cyanidioschyzon merolae
The expression of the plastid genome is dependent on a large number of nucleus-encoded factors. Some...
Chlorarachniophyte algae possess complex plastids acquired by the secondary endosymbiosis of a green...
Photosystem I (PSI) is a large pigment-protein complex and one of the two photosystems that drive el...
AbstractThe phycobilisome (PBS) is a photosynthetic light-harvesting complex in red algae, whose str...
AbstractDevelopment of plastids into chloroplasts, the organelles of photosynthesis, is triggered by...
AbstractBy database search analysis, we identified three Arabidopsis EST (Expression Sequence Tag) e...
Light initiates chloroplast biogenesis in Arabidopsis by eliminating PHYTOCHROME-INTERACTING transcr...
The nuclear-encoded sigma factor SIG4 directly activates transcription of chloroplast psbA and ycf17...
The plastids of plant cells each contain their own genome, and a bacterial-type RNA polymerase calle...
The plastids of plant cells each contain their own genome, and a bacterial-type RNA polymerase calle...
Light initiates chloroplast biogenesis by activating photosynthesis-associated genes encoded by not ...
AbstractSigma factor binding proteins are involved in modifying the promoter preferences of the RNA ...
Plant sigma-like factors have long been suggested to be active components of the plastid-encoded RNA...
International audiencePhotosynthetic eukaryotic cells arose more than a billion years ago through th...
Photosynthetic eukaryotic cells arose more than a billion years ago through the engulfment of a cyan...
The expression of the plastid genome is dependent on a large number of nucleus-encoded factors. Some...
Chlorarachniophyte algae possess complex plastids acquired by the secondary endosymbiosis of a green...
Photosystem I (PSI) is a large pigment-protein complex and one of the two photosystems that drive el...
AbstractThe phycobilisome (PBS) is a photosynthetic light-harvesting complex in red algae, whose str...
AbstractDevelopment of plastids into chloroplasts, the organelles of photosynthesis, is triggered by...
AbstractBy database search analysis, we identified three Arabidopsis EST (Expression Sequence Tag) e...
Light initiates chloroplast biogenesis in Arabidopsis by eliminating PHYTOCHROME-INTERACTING transcr...
The nuclear-encoded sigma factor SIG4 directly activates transcription of chloroplast psbA and ycf17...
The plastids of plant cells each contain their own genome, and a bacterial-type RNA polymerase calle...
The plastids of plant cells each contain their own genome, and a bacterial-type RNA polymerase calle...
Light initiates chloroplast biogenesis by activating photosynthesis-associated genes encoded by not ...
AbstractSigma factor binding proteins are involved in modifying the promoter preferences of the RNA ...
Plant sigma-like factors have long been suggested to be active components of the plastid-encoded RNA...
International audiencePhotosynthetic eukaryotic cells arose more than a billion years ago through th...
Photosynthetic eukaryotic cells arose more than a billion years ago through the engulfment of a cyan...
The expression of the plastid genome is dependent on a large number of nucleus-encoded factors. Some...
Chlorarachniophyte algae possess complex plastids acquired by the secondary endosymbiosis of a green...
Photosystem I (PSI) is a large pigment-protein complex and one of the two photosystems that drive el...