top of page

Species & Dataset

Experiment

Foliar Ozone Injury

  • Medicago truncatula

  • Common name: Barrel clover, Barrel medic

  • Family: Fabaceae

  • Cultivar: Jemalong

  • Tissue: Shoot leaves

  • Ozone concentration: ​1.75 times of ambient ozone levels (70 nmol mol-1)

  • Ozone exposure: 6 days (6 hours/day)

  • Sampling time: ​ End of exposure period

  • Platform: Microarray

  • Year of study: 2012

  • Location: Oklahoma, USA

medicago injury.jpg

Title: Physiological, biochemical and molecular responses to a combination of drought and ozone in Medicago truncatula

 

Summary: Drought and tropospheric ozone are escalating climate change problems that can co-occur. In this study, we observed Medicago truncatula cultivar Jemalong that is sensitive to ozone and drought stress when applied singly,showed tolerance when subjected to a combined application of these stresses. Lowered stomatal conductance may be a vital tolerance mechanism to overcome combined ozone and drought. Sustained increases in both reduced ascorbate and glutathione in response to combined stress may play a role in lowering reactive oxygen species and nitric oxide toxicity. Transcriptome analysis indicated that genes associated with glucan metabolism, responses to temperature and light signalling may play a role in dampening ozone responses due to drought-induced stomatal closure during combined occurrence of these two stresses. Gene ontologies for jasmonic acid signalling and innate immunity were enriched among the 300 differentially expressed genes unique to combined stress. Differential expression of transcription factors associated with redox, defence signalling, jasmonate responses and chromatin modifications may be important for evoking novel gene networks during combined occurrence of drought and ozone. The alterations in redox milieu and distinct transcriptome changes in response to combined stress could aid in tweaking the metabolome and proteome to annul the detrimental effects of ozone and drought in Jemalong.

 

Data repository: MIAMEXPRESS database (http:// www.ebi.ac.uk/miamexpress/) (Accession number E-MEXP-3657)

​

Reference: Iyer, N.J., Tang, Y. and Mahalingam, R., 2013. Physiological, biochemical and molecular responses to a combination of drought and ozone in Medicago truncatula. Plant, Cell & Environment, 36(3), pp.706-720

AGI Gene Code
Uniprot ID
Bin Code
Bin Name
LogFoldChange
Functional annotation
AT2G18440.1
Q570W9
35.1
not assigned.no ontology
0.46
No GO term
AT2G27820.1
Q9ZUY3
13.1.6.3.1
amino acid metabolism.synthesis.aromatic aa.phenylalanine.arogenate dehydratase / prephenate dehydratase
0.43
L-phenylalanine biosynthetic process
AT2G15580.1
A0A178W0N6
29.5.11.4.2
protein.degradation.ubiquitin.E3.RING
0.4
No GO term
AT2G36990.1
Q9LD95
27.3.85
RNA.regulation of transcription.sigma like plant
0.5
transcription initiation
AT1G08310.2
B3H6Y0
35.1
not assigned.no ontology
0.46
biological_process
AT4G23750.2
Q9SUQ2
27.3.3
RNA.regulation of transcription.AP2/EREBP, APETALA2/Ethylene-responsive element binding protein family
0.5
regulation of transcription, DNA-dependent
AT1G71710.1
Q8H0Z6
3.4.1
minor CHO metabolism.myo-inositol.poly-phosphatases
0.44
biological_process
AT5G16010.1
Q9LFS3
17.3.1.1.1
hormone metabolism.brassinosteroid.synthesis-degradation.BRs.DET2
0.42
biological_process
None
#N/A
#N/A
0.44
No GO term
AT3G55040.1
Q9M2W2
26.9
misc.glutathione S transferases
0.46
No GO term
AT2G41510.1
O22213
17.4.1
hormone metabolism.cytokinin.synthesis-degradation
0.49
N-terminal protein myristoylation
AT2G41510.1
O22213
17.4.1
hormone metabolism.cytokinin.synthesis-degradation
0.5
N-terminal protein myristoylation
bottom of page