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Species & Dataset

Experiment

Foliar Ozone Injury

  • Betula pendula

  • Common name: Silver birch

  • Family: Betulaceae

  • Cultivar: Clone 4 (Ozone sensitive)

  • Clone 80 (Ozone tolerant)

  • Tissue: Shoot leaves

  • Ozone concentration: 2 times of background ozone

  • Ozone exposure: Whole vegetative period

  • Sampling time: Day 250 of ozone exposure period

  • Platform: Microarray

  • Year of study: 2010

  • Location: Finland

betula_injury.jpg

Title: Differential gene expression in senescing leaves of two silver birch genotypes in response to elevated CO2 and tropospheric ozone

 

Summary: Long-term effects of elevated CO2 and O3 concentrations on gene expression in silver birch (Betula pendula Roth) leaves were studied during the end of the growing season. Two birch genotypes, clones 4 and 80, with different ozone growth responses, were exposed to 2x ambient CO2 and/or O3 in open-top chambers (OTCs). Microarray analyses were performed after 2 years of exposure, and the transcriptional profiles were compared to key physiological characteristics during leaf senescence. There were genotypic differences in the responses to CO2 and O3. Clone 80 exhibited greater transcriptional response and capacity to alter metabolism, resulting in better stress tolerance. The gene expression patterns of birch leaves indicated contrasting responses of senescence-related genes to elevated CO2 and O3. Elevated CO2 delayed leaf senescence and reduced associated transcriptional changes, whereas elevated O3 advanced leaf senescence because of increased oxidative stress. The combined treatment demonstrated that elevated CO2 only temporarily alleviated the negative effects of O3. Gene expression data alone were insufficient to explain the O3 response in birch, and additional physiological and biochemical data were required to understand the true O3 sensitivity of these clones.

 

Data repository: ArrayExpress  (Accession number A-MEXP-1042) (http://www.ebi.ac.uk/microarray-as/aer/entry)

Reference: KONTUNEN‐SOPPELA, S.A.R.I., Riikonen, J., Ruhanen, H., Brosche, M., Somervuo, P., Peltonen, P., Kangasjärvi, J., Auvinen, P., Paulin, L., Keinänen, M. and Oksanen, E., 2010. Differential gene expression in senescing leaves of two silver birch genotypes in response to elevated CO2 and tropospheric ozone. Plant, cell & environment, 33(6),

Gene
GeneBank ID
Clone 80 Aug logFC (EO3)
Clone 4 Aug logFC (EO3)
Clone 80 Sep logFC (EO3)
Clone 4 Sep logFC (EO3)
Functional annotaion
P0000800009C04
AJ779899
-0.69
-0.13
-0.03
0.02
iron-sulfur assembly protein
P0000100025H07
AJ769155
-0.38
-0.09
0.07
0
iron-sulfur assembly protein
P0000700001E11
AJ779238
-0.62
-0.06
-0.11
0.06
leucoanthocyanidin reductase
P0000300023C09
AJ774698
-0.59
-0.08
-0.27
-0.23
light harvesting complex I protein lhca2
P0000300007C04
AJ773977
-0.48
-0.1
-0.04
-0.12
light-harvesting complex II protein lhcb1
P0000200004C07
AJ773056
-0.42
0.08
-0.02
-0.26
light-harvesting complex II protein lhcb1
P0000300032B05
AJ775400
-0.5
-0.24
-0.14
-0.25
light-harvesting complex II protein lhcb2
P0000200008C03
AJ773302
-0.54
-0.11
-0.07
-0.15
light-harvesting complex II protein lhcb3
P0000100025G05
AJ769142
-1.04
-0.14
-0.17
-0.19
lil3 protein
P0000400034D12
AJ777747
-0.37
-0.2
0.11
0.25
lipid binding protein
P0000100018E04
AJ768493
-0.44
0.03
-0.03
-0.09
malate dehydrogenase, glyoxysomal
P0000100022F12
AJ768869
-0.53
-0.16
-0.14
-0.02
Mg protoporphyrin IX chelatase (at5g13630)
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