top of page
Species & Dataset
Experiment
Foliar ozone injury
  • Arabidopsis thaliana

  • Common name: Thale cress, Mouse-ear cress

  • Family: Brassicaceae

  • Cultivar: Arabidopsis thaliana (ecotype Ws-0)

  • Tissue: Rosettes

  • Ozone concentration: 30 nL L-1 (Control)

  • 300 nL L-1 (Treatment)

  • Ozone exposure: 6 hours

  • Sampling time: 1 and 4 hours after initiation of ozone treatment,

  • 2, 6, and 18 hours after the end of ozone treatment

  • Platform: Microarray

  • Year of study: 2006

  • Location: USA

Arabidopsis_injury.png

Title: Analysis of oxidative signaling induced by ozone in Arabidopsis thaliana

 

Summary: We are using acute ozone as an elicitor of endogenous reactive oxygen species (ROS) to understand oxidative signalling in Arabidopsis. Temporal patterns of ROS following a 6 h exposure to 300 nL L-1 of ozone in ozone-sensitive Wassilewskija (Ws-0) ecotype showed a biphasic ROS burst with a smaller peak at 4 h and a larger peak at 16 h. This was accompanied by a nitric oxide (NO) burst that peaked at 9 h. An analysis of antioxidant levels showed that both ascorbate (AsA) and glutathione (GSH) were at their lowest levels, when ROS levels were high in ozone-stressed plants. Whole genome expression profiling analysis at 1, 4, 8, 12 and 24 h after initiation of ozone treatment identified 371 differentially expressed genes. Early induction of proteolysis and hormone-responsive genes indicated that an oxidative cell death pathway was triggered rapidly. Downregulation of genes involved in carbon utilization, energy pathways and signalling suggested an inefficient defense response. Comparisons with other large-scale expression profiling studies indicated some overlap between genes induced by ethylene and ozone, and a significant overlap between genes repressed by ozone and methyl jasmonate treatment. Further, analysis of cis elements in the promoters of ozone-responsive genes also supports the view that phytohormones play a significant role in ozone-induced cell death.

 

Data repository: http://www.ag.arizona.edu/microarray/

​

Reference: Mahalingam, R., Jambunathan, N., Gunjan, S.K., Faustin, E., Weng, H.U.A. and Ayoubi, P., 2006. Analysis of oxidative signalling induced by ozone in Arabidopsis thaliana. Plant, cell & environment, 29(7), pp.1357-1371.

Gene Identifier
AGI Gene Code
Uniprot ID
Bin Code
Bin Name
Log2FC (1hr)
Log2FC (4hr)
Log2FC (8hr)
Log2FC (12hr)
Log2FC (24hr)
p-value (1hr)
p-value (4hr)
p-value (8hr)
p-value (12hr)
p-value (24hr)
Functional annotation
AL049640
AT3G57770
F4J3H7
29.4.1.53
protein.postranslational modification.kinase.receptor like cytoplasmatic kinase III
3.8
1.3
1.4
0.8
2.6
0.008
0.198
0.368
0.278
0.141
Wall associated kinase 4 id At3g57770.1
AL049660
AT4G39340
Q9T039
35.2
not assigned.unknown
3
2.8
2.9
0.7
1.7
0.008
0.052
0.069
0.195
0.154
hypothetical protein protein id At4g39340.1
AL050351
AT3G61720
Q9M366
35.1.19
not assigned.no ontology.C2 domain-containing protein
-0.3
1.1
2.1
1.6
1.1
0.653
0.07
0.01
0.276
0.094
putative protein protein id At3g61720.1
AL132959
AT3G49460
Q1PEH0
29.2.1.2.2.81
protein.synthesis.ribosomal protein.eukaryotic.60S subunit.P1
0.4
1.7
2.3
1.5
0.8
0.616
0.059
0.008
0.201
0.158
putative protein protein id At3g49460.1
AL132964
AT3G52980
Q9LF94
27.4
RNA.RNA binding
0.6
1
1.4
1.2
1.2
0.417
0.119
0.014
0.235
0.065
RRM-containing protein protein id At3g52980.1
AL132969
AT3G52290
Q9FT53
30.3
signalling.calcium
1.3
2.1
3.7
2.8
3
0.312
0.065
0.011
0.162
0.065
Calmodulin binding protein id At3g52290.1
AL132972
AT3G50270
Q9SNE0
16.2
secondary metabolism.phenylpropanoids
-1.5
-2.1
-1.9
-1.6
-1.3
0.094
0.019
0.139
0.193
0.065
anthranilate N-hydroxycinnamoyl/benzoyltransferase -like protein protein id At3g50270.1
AL132976
AT3G57810
Q8LBZ4
29.5.3
protein.degradation.cysteine protease
-0.1
1.6
1.6
0.8
1.2
0.311
0.094
0.023
0.252
0.061
auxin-regulated protein protein id At3g57810.1
AL132977
AT3G51340
A0A1I9LS55
29.5.4
protein.degradation.aspartate protease
-0.4
-1.2
-1.6
-1.4
-1
0.626
0.058
0.012
0.16
0.082
putative Aspartyl protease id At3g51340.1
AL132980
AT3G57500
Q5Q0C3
35.2
not assigned.unknown
5.5
3.3
5.2
1.2
1.7
0.001
0.019
0.008
0.2
0.191
hypothetical protein protein id At3g57500.1
AL133248
AT3G46500
F4J939
17.6.1
hormone metabolism.gibberelin.synthesis-degradation
-1.6
-0.9
-1.4
-1.8
-1
0.32
0.097
0.05
0.16
0.084
putative protein protein id At3g46500.1
AL133314
AT3G50440
Q8S9K8
35.1
not assigned.no ontology
0.5
1.2
2.1
1.5
1.1
0.113
0.064
0.022
0.186
0.157
putative protein protein id At3g50440.1
bottom of page