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Ethylene and plant responses to nutritional stress
Jonathan Lynch
, Kathleen M. Brown
Plant Science
Huck Institutes of the Life Sciences
Plant Institute
Research output
:
Contribution to journal
›
Article
›
peer-review
152
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Scopus citations
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Dive into the research topics of 'Ethylene and plant responses to nutritional stress'. Together they form a unique fingerprint.
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Keyphrases
Ethylene
100%
Nutrient Stress
100%
Plant Response
100%
Ethylene Response Factor
100%
P Stress
33%
Abiotic Stress
22%
Adaptive Response
22%
Oxidative Stress
11%
Morphological Changes
11%
Rhizobium
11%
Plant Hormones
11%
Senescence
11%
Root System
11%
Fe Deficiency
11%
Ethylene Production
11%
Legumes
11%
Symbiosis
11%
Plant Parts
11%
Stress Signaling
11%
Nutrient Deficiency
11%
Abscission
11%
Nutrient Patches
11%
Root Hair Development
11%
Ethylene Sensitivity
11%
Aerenchyma Formation
11%
Morphological Plasticity
11%
Physiological Plasticity
11%
Root Response
11%
Tissue Necrosis
11%
Gravitropism
11%
Severe Toxicity
11%
Macronutrient Deficiency
11%
Nutrient Treatment
11%
Nutritional Minerals
11%
Immunology and Microbiology
Morphology
100%
Rhizobiaceae
50%
Rhizobium
50%
Oxidative Stress
50%
Root System
50%
Root Hair
50%
Aerenchyma
50%
Symbiosis
50%
Agricultural and Biological Sciences
Ethylene
100%
Plant Response
100%
Adaptive Response
20%
Rhizobiaceae
10%
Rhizobium
10%
Root System
10%
Aerenchyma
10%
Root Hair
10%
Ethylene Production
10%
Necrosis
10%
Biotic Stress
10%
Nutrient Deficiencies
10%
Abscission
10%
Plant Hormone
10%
Oxidative Stress
10%
Gravitropism
10%
Abiotic Stress
10%
Symbiosis
10%
Nursing and Health Professions
Metal Toxicity
9%
Abiotic Stress
9%
Biotic Stress
9%