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Time-Series Transcriptomics Reveals That AGAMOUS-LIKE22 Affects Primary Metabolism and Developmental Processes in Drought-Stressed Arabidopsis.Constitutive salicylic acid defences do not compromise seed yield, drought tolerance and water productivity in the Arabidopsis accession C24.Quantitative measurement of specific biomarkers for protein oxidation, nitration and glycation in Arabidopsis leaves.Impact of chloroplastic- and extracellular-sourced ROS on high light-responsive gene expression in Arabidopsis.Imaging the production of singlet oxygen in vivo using a new fluorescent sensor, Singlet Oxygen Sensor Green.To defend or to grow: Lessons from Arabidopsis C24.Arabidopsis HEAT SHOCK TRANSCRIPTION FACTORA1b regulates multiple developmental genes under benign and stress conditions.Molecular mechanisms controlling plant growth during abiotic stress.Advanced Glycation End Products profiling uncovers abiotic stress specific target proteins in ArabidopsisIntegrating transcriptomic techniques and k-means clustering in metabolomics to identify markers of abiotic and biotic stress in Medicago truncatulaAccelerated flowering time reduces lifetime water use without penalizing reproductive performance in Arabidopsis.
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description
researcher ORCID ID = 0000-0003-2320-3890
@en
wetenschapper
@nl
name
Ulrike Bechtold
@ast
Ulrike Bechtold
@en
Ulrike Bechtold
@es
Ulrike Bechtold
@nl
type
label
Ulrike Bechtold
@ast
Ulrike Bechtold
@en
Ulrike Bechtold
@es
Ulrike Bechtold
@nl
prefLabel
Ulrike Bechtold
@ast
Ulrike Bechtold
@en
Ulrike Bechtold
@es
Ulrike Bechtold
@nl
P106
P31
P496
0000-0003-2320-3890