Maize anthocyanin regulatory gene pl is a duplicate of c1 that functions in the plant.
- 1 December 1993
- journal article
- Published by Oxford University Press (OUP) in Plant Cell
- Vol. 5 (12) , 1795-1805
- https://doi.org/10.1105/tpc.5.12.1795
Abstract
Genetic studies in maize have identified several regulatory genes that control the tissue-specific synthesis of purple anthocyanin pigments in the plant. c1 regulates pigmentation in the aleurone layer of the kernel, whereas pigmentation in the vegetative and floral tissues of the plant body depends on pl. c1 encodes a protein with the structural features of eukaryotic transcription factors and functions to control the accumulation of transcripts for the anthocyanin biosynthetic genes. Previous genetic and molecular observations have prompted the hypothesis that c1 and pl are functionally duplicate, in that they control the same set of anthocyanin structural genes but in distinct parts of the plant. Here, we show that this proposed functional similarity is reflected by DNA sequence homology between c1 and pl. Using a c1 DNA fragment as a hybridization probe, genomic and cDNA clones for pl were isolated. Comparison of pl and c1 cDNA sequences revealed that the genes encode proteins with 90% or more amino acid identity in the amino- and carboxyl-terminal domains that are known to be important for the regulatory function of the C1 protein. Consistent with the idea that the pl gene product also acts as a transcriptional activator is our finding that a functional pl allele is required for the transcription of at least three structural genes in the anthocyanin biosynthetic pathway.Keywords
This publication has 22 references indexed in Scilit:
- Cloning and nucleotide sequence of a cDNA encodingB-Peru, a regulatory protein of the anthocyanin pathway in maizePlant Molecular Biology, 1991
- C1- and R-dependent expression of the maize Bz1 gene requires sequences with homology to mammalian myb and myc binding sites.Plant Cell, 1991
- Identification of functional domains in the maize transcriptional activator C1: comparison of wild-type and dominant inhibitor proteins.Genes & Development, 1991
- Recombinant inbreds for molecular mapping in maize: theoretical and practical considerationsTrends in Genetics, 1991
- A Regulatory Gene as a Novel Visible Marker for Maize TransformationScience, 1990
- Lc, a member of the maize R gene family responsible for tissue-specific anthocyanin production, encodes a protein similar to transcriptional activators and contains the myc-homology region.Proceedings of the National Academy of Sciences, 1989
- Nucleotide sequence of the maizeR-S geneNucleic Acids Research, 1989
- Cloning of the bronze locus in maize by a simple and generalizable procedure using the transposable controlling element Activator ( Ac )Proceedings of the National Academy of Sciences, 1984
- Genetic control of UDPglucose:flavonol 3-O-glucosyltransferase in the endosperm of maizeBiochemical Genetics, 1977
- Control of anthocyanin synthesis by the C locus in maizeBiochemical Genetics, 1977