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The leaf transcriptome of the Arabidopsis thaliana aquaporin gene PIP1;2 T-DNA insertion line was compared to that of control plants. In total 730 genes were found to be differentially regulated. This regulation pattern was compared to mild drought stress and low CO2 Affymetrix data to elucidate whe...
ORGANISM(S): Arabidopsis thaliana 
We have investigated the genomic response of Arabidopsis cell suspension culture under high light. Our main goal has been twofold: first, to establish whether chloroplasts in Arabidopsis cell suspension culture are functional and, as such, can act as sensors of adverse external stimuli leading to th...
ORGANISM(S): Arabidopsis thaliana 
Seeds of Pisum sativum L. cv Alaska Early (purchased from the ‘Abundant Life Seed Foundation’, Port Townsend, USA) were equilibrated for approximately 5 weeks in tightly sealed boxes over 300 g-1 non-saturated LiCl (Hay et al. 2008), producing 60% relative humidity, in a temperature-controlled r...
ORGANISM(S): Pisum sativum 
How do the transcript levels of leaf-expressed genes change in a normal day-night cycle? The interest is in genes that are regulated by the circadian clock and the diurnal component (i.e. light, metabolite changes). Plants were grown on soil in a 12/12 h light/dark rythm at 20°C day and night. 5 we...
ORGANISM(S): Arabidopsis thaliana 
Nitric oxide (NO) is considered a key regulator of plant developmental processes and defense. Characterization of root-related phenotypes and the involvement of NO in the regulation of primary root growth. Three-experimental condition, SDW, SNP and cPTIO. Biological replicates: 3 control replicates ...
ORGANISM(S): Arabidopsis thaliana 
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