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PMID: 20479230 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Arabidopsis thaliana transcription factors bZIP19 and bZIP23 regulate the adaptation to zinc deficiency.

Proceedings of the National Academy of Sciences of the United States of America ·Vol. 107 ·No. 22 ·2010-06-01 ·Pages 10296-301

Assunção AG, Herrero E, Lin YF, Huettel B, Talukdar S, Smaczniak C, Immink RG, van Eldik M, Fiers M, Schat H, Aarts MG

Abstract

Zinc is an essential micronutrient for all living organisms. When facing a shortage in zinc supply, plants adapt by enhancing the zinc uptake capacity. The molecular regulators controlling this adaptation are not known. We present the identification of two closely related members of the Arabidopsis thaliana basic-region leucine-zipper (bZIP) transcription factor gene family, bZIP19 and bZIP23, that regulate the adaptation to low zinc supply. They were identified, in a yeast-one-hybrid screening, to associate to promoter regions of the zinc deficiency-induced ZIP4 gene of the Zrt- and Irt-related protein (ZIP) family of metal transporters. Although mutation of only one of the bZIP genes hardly affects plants, we show that the bzip19 bzip23 double mutant is hypersensitive to zinc deficiency. Unlike the wild type, the bzip19 bzip23 mutant is unable to induce the expression of a small set of genes that constitutes the primary response to zinc deficiency, comprising additional ZIP metal transporter genes. This set of target genes is characterized by the presence of one or more copies of a 10-bp imperfect palindrome in their promoter region, to which both bZIP proteins can bind. The bZIP19 and bZIP23 transcription factors, their target genes, and the characteristic cis zinc deficiency response elements they can bind to are conserved in higher plants. These findings are a significant step forward to unravel the molecular mechanism of zinc homeostasis in plants, allowing the improvement of zinc bio-fortification to alleviate human nutrition problems and phytoremediation strategies to clean contaminated soils.

MeSH Terms
Arabidopsis/genetics,metabolism Arabidopsis Proteins/genetics,metabolism Base Sequence Basic-Leucine Zipper Transcription Factors/genetics,metabolism Conserved Sequence DNA, Plant/genetics Genes, Plant Genetic Complementation Test Humans Mutagenesis, Insertional Mutation Phenotype Plants/genetics Plants, Genetically Modified Promoter Regions, Genetic Two-Hybrid System Techniques Zinc/metabolism
Chemicals
Arabidopsis Proteins Basic-Leucine Zipper Transcription Factors DNA, Plant Zinc
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Assunção Ana G L
Laboratory of Genetics, Wageningen University, 6708 PB, Wageningen, The Netherlands. aassu@life.ku.dk
Herrero Eva
Lin Ya-Fen
Huettel Bruno
Talukdar Sangita
Smaczniak Cezary
Immink Richard G H
van Eldik Mandy
Fiers Mark
Schat Henk
Aarts Mark G M
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Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
1091-6490
Published
2010-06-01
Epub
2010-00-17
Pages
10296-301
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC2890486
Subset
IM
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