Photoregulation of Maize Plastid Genes during Light-Induced Development View Full Text


Ontology type: schema:Chapter     


Chapter Info

DATE

1987

AUTHORS

Steven R. Rodermel , Lyle D. Crossland , Jean H. Lukens , Karen M. Muskavitch , David R. Russell , J. Y. Shen , Y.-Sheng Zhu , Lawrence Bogorad

ABSTRACT

DNA/RNA hybridization experiments have led to the identification of several regions of the maize plastid chromosome that contain photogenes— i.e., genes whose transcripts increase appreciably in abundance during light-induced plastid differentiation (1,2). The data from these experiments suggest that transcriptional regulation of gene expression plays a central role in the greening process. As shown in Figure 1, these positively photoregulated regions are dispersed over about 19% of the chromosome, and nearly all the genes within these regions have been identified and their nucleotide sequences determined. These include psbC and psbD, the genes for the 44 kd and “D2” polypeptides of photosystem II (E.T. Krebbers, K.M. Muskavitch and L. Bogorad, in preparation); ps2B (or psbA), the gene for the 32 kd herbicide-binding QB protein of photosystem II (3,4,5,6) rcL, the gene for the large subunit of ribulose bisphosphate carboxylase (7); cflEE, the fused gene for the beta and epsilon subunits of CF1 (8); pslA1 and pslA2, the duplicated genes for the chlorophyll a-proteins of the photosystem I reaction center complex (9); rpS14, the gene for the ribosomal protein “S14” (S.R. Rodermel, P. Orlin and L. Bogorad, in preparation); and cf1A, cf0I, and cf0III, the genes for the alpha subunit of CF1 and subunits I and III of CF0 (2/10). More... »

PAGES

519-526

References to SciGraph publications

Book

TITLE

Progress in Photosynthesis Research

ISBN

978-94-017-0521-9
978-94-017-0519-6

Author Affiliations

Identifiers

URI

http://scigraph.springernature.com/pub.10.1007/978-94-017-0519-6_105

DOI

http://dx.doi.org/10.1007/978-94-017-0519-6_105

DIMENSIONS

https://app.dimensions.ai/details/publication/pub.1022572845


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