Functional Complementation of Anthocyanin Sequestration in the Vacuole by Widely Divergent Glutathione S-Transferases
Open Access
- 1 July 1998
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Cell
- Vol. 10 (7) , 1135-1149
- https://doi.org/10.1105/tpc.10.7.1135
Abstract
Glutathione S-transferases (GSTs) traditionally have been studied in plants and other organisms for their ability to detoxify chemically diverse herbicides and other toxic organic compounds. Anthocyanins are among the few endogenous substrates of plant GSTs that have been identified. The Bronze2 (Bz2) gene encodes a type III GST and performs the last genetically defined step of the maize anthocyanin pigment pathway. This step is the conjugation of glutathione to cyanidin 3-glucoside (C3G). Glutathionated C3G is transported to the vacuole via a tonoplast Mg-ATP–requiring glutathione pump (GS-X pump). Genetically, the comparable step in the petunia anthocyanin pathway is controlled by the Anthocyanin9 (An9) gene. An9 was cloned by transposon tagging and found to encode a type I plant GST. Bz2 and An9 have evolved independently from distinct types of GSTs, but each is regulated by the conserved transcriptional activators of the anthocyanin pathway. Here, a phylogenetic analysis is presented, with special consideration given to the origin of these genes and their relaxed substrate requirements. In particle bombardment tests, An9 and Bz2 functionally complement both mutants. Among several other GSTs tested, only soybean GmGST26A (previously called GmHsp26A and GH2/4) and maize GSTIII were found to confer vacuolar sequestration of anthocyanin. Previously, these genes had not been associated with the anthocyanin pathway. Requirements for An9 and Bz2 gene function were investigated by sequencing functional and nonfunctional germinal revertants of an9-T3529, bz2::Ds, and bz2::Mu1.Keywords
This publication has 49 references indexed in Scilit:
- Insertion mutagenesis and study of transposable elements using a new unstable virescent seedling allele for isolation of haploid petunia linesThe Plant Journal, 1996
- Ubiquitin promoter-based vectors for high-level expression of selectable and/or screenable marker genes in monocotyledonous plantsTransgenic Research, 1996
- The No Apical Meristem Gene of Petunia Is Required for Pattern Formation in Embryos and Flowers and Is Expressed at Meristem and Primordia BoundariesPublished by Elsevier ,1996
- Three-dimensional structure of glutathione S-transferase from Arabidopsis thaliana at 2.2 Å resolution: Structural characterization of herbicide-conjugating plant glutathione S-transferases and a novel active site architectureJournal of Molecular Biology, 1996
- A herbicide antidote (safener) induces the activity of both the herbicide detoxifying enzyme and of a vacuolar transporter for the detoxified herbicideFEBS Letters, 1994
- Cloning and structural analysis of the anthocyanin pigmentation locus Rt of Petunia hybrida: characterization of insertion sequences in two mutant allelesThe Plant Journal, 1994
- Characterization of two cDNAs (ERD11 and ERD13) for dehydration‐inducible genes that encode putative glutathione S‐transferases in Arabidopsis thaliana LFEBS Letters, 1993
- Bronze-2 Gene Expression and Intron Splicing Patterns in Cells and Tissues of Zea mays L.Plant Physiology, 1992
- Molecular characterization of a nonautonomous transposable element (dTph1) of petunia.Plant Cell, 1990
- Regulation of the Timing of Transposable Element Excision During Maize DevelopmentScience, 1990