The complexity of the plastid transcriptional apparatus (two or three different RNA polymerases and numerous regulatory proteins) makes it very difficult to attribute specific function(s) to its individual components. We have characterized an Arabidopsis T-DNA insertion line disrupting the nuclear gene coding for one of the six plastid sigma factors (SIG4) that regulate the activity of the plastid-encoded RNA polymerase PEP. This mutant shows a specific diminution of transcription of the plastid ndhF gene, coding for a subunit of the plastid NDH [NAD(P)H dehydrogenase] complex. The absence of another NDH subunit, i.e. NDHH, and the absence of a chlorophyll fluorescence transient previously attributed to the activity of the plastid NDH compl...
Phytochromes initiate chloroplast biogenesis by activating genes encoding the photosynthetic apparat...
The plastids of plant cells each contain their own genome, and a bacterial-type RNA polymerase calle...
AbstractPlastid genes are transcribed by two types of RNA polymerase in angiosperms: the bacterial t...
International audiencePlastid gene expression is rather complex. Transcription is performed by three...
Plant sigma-like factors have long been suggested to be active components of the plastid-encoded RNA...
AbstractBy database search analysis, we identified three Arabidopsis EST (Expression Sequence Tag) e...
AbstractDevelopment of plastids into chloroplasts, the organelles of photosynthesis, is triggered by...
AbstractChloroplasts sigma factors act in concert with PEP, the bacterial-type plastid RNA polymeras...
Plants contain a nuclear gene family for plastid sigma factors, i.e., proteins that associate with t...
[EN] Plant regulatory circuits coordinating nuclear and plastid gene expression have evolved in resp...
Sigma factors are the predominant factors involved in transcription regulation in bacteria. These fa...
The plastid genomes of higher plants contain eleven reading frames (ndhA-K) that are homologous to g...
AbstractSigma factors are the predominant factors involved in transcription regulation in bacteria. ...
Light initiates chloroplast biogenesis in Arabidopsis by eliminating PHYTOCHROME-INTERACTING transcr...
NAD(P)H dehydrogenase (NDH) is a homolog of respiratory complex I and mediates one of the two pathwa...
Phytochromes initiate chloroplast biogenesis by activating genes encoding the photosynthetic apparat...
The plastids of plant cells each contain their own genome, and a bacterial-type RNA polymerase calle...
AbstractPlastid genes are transcribed by two types of RNA polymerase in angiosperms: the bacterial t...
International audiencePlastid gene expression is rather complex. Transcription is performed by three...
Plant sigma-like factors have long been suggested to be active components of the plastid-encoded RNA...
AbstractBy database search analysis, we identified three Arabidopsis EST (Expression Sequence Tag) e...
AbstractDevelopment of plastids into chloroplasts, the organelles of photosynthesis, is triggered by...
AbstractChloroplasts sigma factors act in concert with PEP, the bacterial-type plastid RNA polymeras...
Plants contain a nuclear gene family for plastid sigma factors, i.e., proteins that associate with t...
[EN] Plant regulatory circuits coordinating nuclear and plastid gene expression have evolved in resp...
Sigma factors are the predominant factors involved in transcription regulation in bacteria. These fa...
The plastid genomes of higher plants contain eleven reading frames (ndhA-K) that are homologous to g...
AbstractSigma factors are the predominant factors involved in transcription regulation in bacteria. ...
Light initiates chloroplast biogenesis in Arabidopsis by eliminating PHYTOCHROME-INTERACTING transcr...
NAD(P)H dehydrogenase (NDH) is a homolog of respiratory complex I and mediates one of the two pathwa...
Phytochromes initiate chloroplast biogenesis by activating genes encoding the photosynthetic apparat...
The plastids of plant cells each contain their own genome, and a bacterial-type RNA polymerase calle...
AbstractPlastid genes are transcribed by two types of RNA polymerase in angiosperms: the bacterial t...