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Species & Dataset
Experiment
Foliar ozone injury
  • Arabidopsis thaliana

  • Common name: Thale cress, Mouse-ear cress

  • Family: Brassicaceae

  • Cultivar: Arabidopsis thaliana (ecotype Col-0 and RLD1)

  • Tissue: Rosettes

  • Ozone concentration: 300 ppb at flow rate of 100 ml per minute

  • Ozone exposure: 1 hour

  • Platform: Microarray

  • Year of study: 2012

  • Location: Lancester, UK

Arabidopsis_injury.png

Title:  A stress-specific calcium signature regulating an ozone-responsive gene expression network in Arabidopsis.

 

Summary: Changes in gene expression form a key component of the molecular mechanisms by which plants adapt and respond to environmental stresses. There is compelling evidence for the role of stimulus-specific Ca2+ signatures in plant stress responses. However, our understanding of how they orchestrate the differential expression of stress-induced genes remains fragmentary. We have undertaken a global study of changes in the Arabidopsis transcriptome induced by the pollutant ozone in order to establish a robust transcriptional response against which to test the ability of Ca2+ signatures to encode stimulus-specific transcriptional information. We show that the expression of a set of co-regulated ozone-induced genes is Ca2+-dependent and that abolition of the ozone-induced Ca2+ signature inhibits the induction of these genes by ozone. No induction of this set of ozone-regulated genes was observed in response to H2O2, one of the reactive oxygen species (ROS) generated by ozone, or cold stress, which also generates ROS, both of which stimulate changes in [Ca2+]cyt. These data establish unequivocally that the Ca2+-dependent changes in gene expression observed in response to ozone are not simply a consequence of an ROS-induced increase in [Ca2+]cyt per se. The magnitude and temporal dynamics of the ozone, H2O2, and cold Ca2+ signatures all differ markedly. This finding is consistent with the hypothesis that stimulus-specific transcriptional information can be encoded in the spatiotemporal dynamics of complex Ca2+ signals in plants.

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Reference: Short, E.F., North, K.A., Roberts, M.R., Hetherington, A.M., Shirras, A.D. and McAinsh, M.R., 2012. A stress‐specific calcium signature regulating an ozone‐responsive gene expression network in Arabidopsis. The Plant Journal, 71(6), pp.948-961

AGI Gene Code
Uniprot ID
Bin Code
Bin Name
Functional annotation
Expression
AT3G49260
Q9ASW3
30.3
signalling.calcium
IQD21__IQD21 (IQ-DOMAIN 21, IQ-domain 21); calmodulin binding
�
AT4G14750
A0A1P8B590
30.3
signalling.calcium
IQD19__IQD19 (IQ-DOMAIN 19); calmodulin binding
�
AT5G49480
Q9FDX6
30.3
signalling.calcium
ATCP1_ACP1__ATCP1 (CA2+-BINDING PROTEIN 1); calcium ion binding
�
AT1G52410
F4ICX9
30.3
signalling.calcium
TSA1__TSA1 (TSK-ASSOCIATING PROTEIN 1)
�
AT1G76650
Q9SRE6
30.3
signalling.calcium
CML38__CML38
�
AT2G33380
O22788
30.3
signalling.calcium
RD20__RD20 (RESPONSIVE TO DESSICATION 20); calcium ion binding
�
AT1G08860
Q5XQC7
30.3
signalling.calcium
BON3__BON3 (BONZAI 3)
�
AT1G08450
O04153
30.3
signalling.calcium
CRT3__CRT3 (CALRETICULIN 3); calcium ion binding
�
AT4G34150
O49490
30.3
signalling.calcium
C2 domain-containing protein
�
AT4G33050
O82645
30.3
signalling.calcium
EDA39__EDA39 (embryo sac development arrest 39)
�
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