Regulatory Genes Controlling Anthocyanin Pigmentation Are Functionally Conserved among Plant Species and Have Distinct Sets of Target Genes.
- 1 November 1993
- journal article
- Published by Oxford University Press (OUP) in Plant Cell
- Vol. 5 (11) , 1497-1512
- https://doi.org/10.1105/tpc.5.11.1497
Abstract
In this study, we demonstrate that in petunia at least four regulatory genes (anthocyanin-1 [an1], an2, an4, and an11) control transcription of a subset of structural genes from the anthocyanin pathway by using a combination of RNA gel blot analysis, transcription run-on assays, and transient expression assays. an2- and an11- mutants could be transiently complemented by the maize regulatory genes Leaf color (Lc) or Colorless-1 (C1), respectively, whereas an1- mutants only by Lc and C1 together. In addition, the combination of Lc and C1 induces pigment accumulation in young leaves. This indicates that Lc and C1 are both necessary and sufficient to produce pigmentation in leaf cells. Regulatory pigmentation genes in maize and petunia control different sets of structural genes. The maize Lc and C1 genes expressed in petunia differentially activate the promoters of the chalcone synthase genes chsA and chsJ in the same way that the homologous petunia genes do. This suggests that the regulatory proteins in both species are functionally similar and that the choice of target genes is determined by their promoter sequences. We present an evolutionary model that explains the differences in regulation of pigmentation pathways of maize, petunia, and snapdragon.Keywords
This publication has 28 references indexed in Scilit:
- cis-element combinations determine phenylalanine ammonia-lyase gene tissue-specific expression patterns.Plant Cell, 1992
- Gibberellic Acid Regulates Chalcone Synthase Gene Transcription in the Corolla of Petunia hybridaPlant Physiology, 1992
- Flavonoid Evolution: An Enzymic ApproachPlant Physiology, 1991
- Identification of functional domains in the maize transcriptional activator C1: comparison of wild-type and dominant inhibitor proteins.Genes & Development, 1991
- Regulation and manipulation of flavonoid gene expression in anthers of petunia: the molecular basis of the Po mutation.Plant Cell, 1991
- The Cauliflower Mosaic Virus 35 S Promoter: Combinatorial Regulation of Transcription in PlantsScience, 1990
- Pollen- and anther-specific chi promoters from petunia: tandem promoter regulation of the chiA gene.Plant Cell, 1990
- 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