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Items: 8

1.

The effect of mutations in AtrbohC on the pattern of gene expression in primary root tissue.

(Submitter supplied) Aim: To determine the effect of an AtrbohC mutation on the gene expression pattern in primary root tissue, to identify candidate genes acting downstream of AtrbohC, particularly any encoding antioxidant-related proteins, signal transduction components or proteins known to be required for normal root-hair development. Background: Root-hairs are a model system for investigating plant cell polarity. The root-hair mutant rhd2 (Schiefelbein and Somerville, 1990. Plant Cell, 2:235) has short hairs that burst at their tips, (Jones and Smirnoff, unpublished). RHD2 has been cloned and is identical to AtrbohC (L. Dolan, pers. comm.), which encodes a homologue of the superoxide-generating neutrophil respiratory burst oxidase catalytic subunit gp91phox (Torres et al., 1998. Plant J., 14:365). Superoxide rapidly dismutates to hydrogen peroxide (H2O2), suggesting that the rhd2 phenotype may result from reduced H2O2 levels in root-hair cells. Low doses of exogenous antioxidants phenocopy the rhd2 root-hair phenotype in wild-type plants (Jones and Smirnoff, unpublished) further supporting a role for H2O2 in root-hair growth. Fluorescent dyes that detect H2O2 show distinct localisation patterns in growing root-hair cells, (Jones and Smirnoff, unpublished). H2O2 may be an important second messenger in plant cell signalling with proposed roles in the development of cotton fibres (Potikha et al., 1999. Plant Physiol., 119: 849) and in ABA-induced stomatal closure (Zhang et al., 2001. Plant Physiol., 126: 1438). In cultured Arabidopsis cells H2O2 induces gene expression, including that of a gp91phox homologue, (Desikan et al., 1998. J. Exp. Bot., 49: 1767; Desikan, et al., 2000. Free Rad. Biol. Med., 28: 773; Baxter-Burrell et al., 2002. Science, 296: 2026) and activates a MAP kinase cascade (Desikan et al., 1999. J. Exp Bot., 50: 1863). cDNA microarray technology has been used previously to examine the effects of H2O2 on gene expression during oxidative stress (Desikan et al., 2001. Plant Physiol., 127: 159). We wish to investigate the effects of H2O2 on gene expression during root development using the rhd2 mutant. We are currently determining the expression pattern of RHD2. By extracting RNA from the small region of the primary root (for wild-type and rhd2 plants grown in sterile conditions) where root hairs are growing we hope to enrich for root-hair RNAs. This may reveal candidate genes that could be examined more closely at the single-cell level. This approach will provide new insights into the role of H2O2 in root-hair development. Keywords: strain_or_line_design
Organism:
Arabidopsis thaliana
Type:
Expression profiling by array
Platform:
GPL198
6 Samples
Download data: CEL
Series
Accession:
GSE6165
ID:
200006165
2.

[ATH1-121501] Affymetrix Arabidopsis ATH1 Genome Array

(Submitter supplied) Affymetrix submissions are typically submitted to GEO using the GEOarchive method described at http://www.ncbi.nlm.nih.gov/projects/geo/info/geo_affy.html June 03, 2009: annotation table updated with netaffx build 28 June 07, 2012: annotation table updated with netaffx build 32 July 01, 2016: annotation table updated with netaffx build 35 Protocol: see manufacturer's web site The current release has 22810 entries and was indexed 26-Jun-2003. more...
Organism:
Arabidopsis thaliana
75 DataSets
1158 Series
9 Related Platforms
15241 Samples
Download data
Platform
Accession:
GPL198
ID:
100000198
3.

MJ001_ATH1_A6-jones-RH-Rep3

Organism:
Arabidopsis thaliana
Source name:
Jones_A6-rhd2-Rep3
Platform:
GPL198
Series:
GSE6165
Download data: CEL
Sample
Accession:
GSM142755
ID:
300142755
4.

MJ001_ATH1_A5-jones-WT-Rep3

Organism:
Arabidopsis thaliana
Source name:
Jones_A5-WT-Rep3
Platform:
GPL198
Series:
GSE6165
Download data: CEL
Sample
Accession:
GSM142754
ID:
300142754
5.

MJ001_ATH1_A4-jones-rh2

Organism:
Arabidopsis thaliana
Source name:
Jones_A4-rhd2-Rep2
Platform:
GPL198
Series:
GSE6165
Download data: CEL
Sample
Accession:
GSM142753
ID:
300142753
6.

MJ001_ATH1_A3-jones-rh1

Organism:
Arabidopsis thaliana
Source name:
Jones_A3-rhd2-Rep1
Platform:
GPL198
Series:
GSE6165
Download data: CEL
Sample
Accession:
GSM142752
ID:
300142752
7.

MJ001_ATH1_A2-jones-WT2

Organism:
Arabidopsis thaliana
Source name:
Jones_A2-WT-Rep2
Platform:
GPL198
Series:
GSE6165
Download data: CEL
Sample
Accession:
GSM142751
ID:
300142751
8.

MJ001_ATH1_A1-jones-WT1

Organism:
Arabidopsis thaliana
Source name:
Jones_A1-WT-Rep1
Platform:
GPL198
Series:
GSE6165
Download data: CEL
Sample
Accession:
GSM142750
ID:
300142750
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