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PMID: 19626137 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Transcriptome analysis of Arabidopsis wild-type and gl3-sst sim trichomes identifies four additional genes required for trichome development.

Molecular plant ·Vol. 2 ·No. 4 ·2009-07-00 ·Pages 803-822

Marks MD, Wenger JP, Gilding E, Jilk R, Dixon RA

Abstract

Transcriptome analyses have been performed on mature trichomes isolated from wild-type Arabidopsis leaves and on leaf trichomes isolated from the gl3-sst sim double mutant, which exhibit many attributes of immature trichomes. The mature trichome profile contained many highly expressed genes involved in cell wall synthesis, protein turnover, and abiotic stress response. The most highly expressed genes in the gl3-sst sim profile encoded ribosomal proteins and other proteins involved in translation. Comparative analyses showed that all but one of the genes encoding transcription factors previously found to be important for trichome formation, and many other trichome-important genes, were preferentially expressed in gl3-sst sim trichomes. The analysis of genes preferentially expressed in gl3-sst sim led to the identification of four additional genes required for normal trichome development. One of these was the HDG2 gene, which is a member of the HD-ZIP IV transcription factor gene family. Mutations in this gene did not alter trichome expansion, but did alter mature trichome cell walls. Mutations in BLT resulted in a loss of trichome branch formation. The relationship between blt and the phenotypically identical mutant, sti, was explored. Mutations in PEL3, which was previously shown to be required for development of the leaf cuticle, resulted in the occasional tangling of expanding trichomes. Mutations in another gene encoding a protein with an unknown function altered trichome branch formation.

Keywords
Cell wall cell differentiation homeodomain trichome wax
MeSH Terms
Acyltransferases/genetics,metabolism Arabidopsis/genetics,growth & development,ultrastructure Arabidopsis Proteins/genetics,metabolism Basic Helix-Loop-Helix Transcription Factors/genetics,metabolism Cell Cycle Proteins/genetics,metabolism Cell Wall/genetics,metabolism Gene Expression Profiling Gene Expression Regulation, Developmental Gene Expression Regulation, Plant Microscopy, Electron, Scanning Models, Biological Mutation Oligonucleotide Array Sequence Analysis Plants, Genetically Modified/genetics,growth & development,metabolism,ultrastructure
Chemicals
Arabidopsis Proteins Basic Helix-Loop-Helix Transcription Factors Cell Cycle Proteins GL3 protein, Arabidopsis SIAMESE protein, Arabidopsis Acyltransferases sinapoyl-Glc-sinapoyl-Glc sinapoyltransferase, Arabidopsis
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Marks M David
Department of Plant Biology, University of Minnesota, St Paul, MN 551108, USA. Electronic address: [email protected].
Wenger Jonathan P
Department of Plant Biology, University of Minnesota, St Paul, MN 551108, USA.
Gilding Edward
Department of Plant Biology, University of Minnesota, St Paul, MN 551108, USA.
Jilk Ross
Department of Chemistry, University of Wisconsin-River Falls, River Falls, WI 54022, USA.
Dixon Richard A
Plant Biology Division, Samuel Roberts Noble Foundation, Ardmore, OK 73401, USA.
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Article Info
Journal
Molecular plant
Abbr.
Mol Plant
ISSN
1674-2052
Published
2009-07-00
Epub
2009-00-19
Pages
803-822
Language
English
Region
England
NLM ID
101465514
PMCID
PMC2713768
Subset
IM
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