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Integration of multi-omics techniques and physiological phenotyping within a holistic phenomics approach to study senescence in model and crop plants
Dominik K. Grosskinsky, Syahnada Jaya Syaifullah,
Thomas Georg Roitsch
Section for Transport Biology
Section for Crop Sciences
36
Citations (Scopus)
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Dive into the research topics of 'Integration of multi-omics techniques and physiological phenotyping within a holistic phenomics approach to study senescence in model and crop plants'. Together they form a unique fingerprint.
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Keyphrases
Phenomics
100%
Crop Plants
100%
Physiological Phenotyping
100%
Senescence
100%
Approaches to Study
100%
Arabidopsis
33%
Leaf Senescence
33%
High-dimensional Data
16%
Temporal Dynamics
16%
Molecular Processes
16%
Stress Resilience
16%
Environmentally Friendly
16%
Abiotic Factors
16%
Telomere Length
16%
Omics Technologies
16%
Epigenetic Control
16%
Plant Stress
16%
Plant Species
16%
Systems Biology Approach
16%
Non-coding RNA (ncRNA)
16%
Novel Regulator
16%
Food Industry
16%
Spur
16%
Agriculture
16%
Biotic Factors
16%
Plant Management
16%
Spatial Dynamics
16%
Molecular Mechanism
16%
Omics Approaches
16%
Immunology and Microbiology
Multi-Omics
100%
Arabidopsis
66%
Leaf Senescence
66%
Dynamics
33%
Telomere Length
33%
Agricultural and Biological Sciences
Phenomics
100%
Postharvest Physiology
25%