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Interactions of polyamines and nitrogen nutrition in plants
Arie Altman
*
, Nitsa Levin
*
Corresponding author for this work
Institute of Plant Sciences and Genetics in Agriculture
Research output
:
Contribution to journal
›
Article
›
peer-review
60
Scopus citations
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Keyphrases
Alkaloids
20%
Ammonium Assimilation
20%
Ammonium Ion
20%
Ammonium Nitrate
20%
Ammonium nutrition
20%
Arginine
20%
Biogenic Amines
20%
Cell Suspension
20%
Cellular pH
20%
Charged Biomolecules
20%
Culture Media
20%
Cyclohexylamine
20%
Diamine
20%
Difluoromethyl
40%
Free Polyamines
20%
Growth Regulation
20%
Intact Plants
20%
Metabolic
20%
Metabolism
20%
Negatively Charged
20%
Nicotine
20%
Nitrate
40%
Nitrogen Depletion
20%
Nitrogen nutrition
100%
Nitrogen Source
20%
Nitrogenous Compounds
20%
Ornithine
20%
Overproduction
20%
Plant Compounds
20%
Polyamine Biosynthesis
40%
Polyamine Content
20%
Polyamines
100%
Polycation
20%
Potassium Nitrate
20%
Proton
20%
Putrescine
40%
Secondary Metabolites
20%
Specific Inhibitor
20%
Spermidine
40%
Spermine
40%
Tobacco Cells
20%
Biochemistry, Genetics and Molecular Biology
Anabolism
100%
Arginine
50%
Cell pH
50%
Cell Suspension
50%
Macromolecule
50%
Metabolic Pathway
50%
Ornithine
50%
Potassium Nitrate
50%
Secondary Metabolite
50%
Medicine and Dentistry
Ammonium Nitrate
12%
Arginine
12%
Biogenic Amine
12%
Buffer
12%
Cell pH
12%
Cyclohexylamine
12%
Eflornithine
12%
Metabolite
12%
Mitoguazone
12%
Nitrogen Derivative
12%
Nutrition
100%
Polyamine
100%
Polycation
12%
Potassium Nitrate
12%
Putrescine
25%
Spermidine
25%
Spermine
25%
Pharmacology, Toxicology and Pharmaceutical Science
Ammonium Nitrate
12%
Arginine
12%
Biogenic Amine
12%
Buffer
12%
Cyclohexylamine
12%
Eflornithine
12%
Mitoguazone
12%
Nitrogen Derivative
12%
Polyamine
100%
Polycation
12%
Potassium Nitrate
12%
Putrescine
25%
Spermidine
25%
Spermine
25%