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dc.contributor.author Leonhardt, Nathalie -
dc.contributor.author Kwak, June Myoung -
dc.contributor.author Robert, Nadia -
dc.contributor.author Waner, David -
dc.contributor.author Leonhardt, Guillaume -
dc.contributor.author Schroeder, Julian I. -
dc.date.accessioned 2024-07-16T11:40:16Z -
dc.date.available 2024-07-16T11:40:16Z -
dc.date.created 2024-06-25 -
dc.date.issued 2004-03 -
dc.identifier.issn 1040-4651 -
dc.identifier.uri http://hdl.handle.net/20.500.11750/56704 -
dc.description.abstract Oligomer-based DNA Affymetrix GeneChips representing about one-third of Arabidopsis (Arabidopsis thaliana) genes were used to profile global gene expression in a single cell type, guard cells, identifying 1309 guard cell–expressed genes. Highly pure preparations of guard cells and mesophyll cells were isolated in the presence of transcription inhibitors that prevented induction of stress-inducible genes during cell isolation procedures. Guard cell expression profiles were compared with those of mesophyll cells, resulting in identification of 64 transcripts expressed preferentially in guard cells. Many large gene families and gene duplications are known to exist in the Arabidopsis genome, giving rise to redundancies that greatly hamper conventional genetic and functional genomic analyses. The presented genomic scale analysis identifies redundant expression of specific isoforms belonging to large gene families at the single cell level, which provides a powerful tool for functional genomic characterization of the many signaling pathways that function in guard cells. Reverse transcription–PCR of 29 genes confirmed the reliability of GeneChip results. Statistical analyses of promoter regions of abscisic acid (ABA)–regulated genes reveal an overrepresented ABA responsive motif, which is the known ABA response element. Interestingly, expression profiling reveals ABA modulation of many known guard cell ABA signaling components at the transcript level. We further identified a highly ABA-induced protein phosphatase 2C transcript, AtP2C-HA, in guard cells. A T-DNA disruption mutation in AtP2C-HA confers ABA-hypersensitive regulation of stomatal closing and seed germination. The presented data provide a basis for cell type–specific genomic scale analyses of gene function. -
dc.language English -
dc.publisher American Society of Plant Biologists -
dc.title Microarray Expression Analyses of Arabidopsis Guard Cells and Isolation of a Recessive Abscisic Acid Hypersensitive Protein Phosphatase 2C Mutant -
dc.type Article -
dc.identifier.doi 10.1105/tpc.019000 -
dc.identifier.wosid 000220246500005 -
dc.identifier.bibliographicCitation The Plant Cell, v.16, no.3, pp.596 - 615 -
dc.description.isOpenAccess TRUE -
dc.subject.keywordAuthor POTASSIUM CHANNEL -
dc.subject.keywordAuthor ANION CHANNELS -
dc.subject.keywordAuthor K+ CHANNELS -
dc.subject.keywordAuthor ABA -
dc.subject.keywordAuthor DROUGHT -
dc.subject.keywordAuthor BINDING-PROTEIN -
dc.subject.keywordAuthor CALCIUM -
dc.subject.keywordAuthor STRESS -
dc.subject.keywordAuthor SIGNAL-TRANSDUCTION -
dc.subject.keywordAuthor GENE-EXPRESSION -
dc.citation.endPage 615 -
dc.citation.number 3 -
dc.citation.startPage 596 -
dc.citation.title The Plant Cell -
dc.citation.volume 16 -
dc.description.journalRegisteredClass scie -
dc.description.journalRegisteredClass scopus -
dc.relation.journalResearchArea Biochemistry & Molecular Biology; Plant Sciences; Cell Biology -
dc.relation.journalWebOfScienceCategory Biochemistry & Molecular Biology;Plant Sciences;Cell Biology -
dc.type.docType Article -
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Department of New Biology Lab of Cellular Precision and Plant Development 1. Journal Articles

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