Spermine-mediated polyamine metabolism enhances arsenic-stress tolerance in Phaseolus vulgaris by expression of zinc-finger proteins related genes and modulation of mineral nutrient homeostasis and antioxidative system
Author:
Publisher
Elsevier BV
Subject
Health, Toxicology and Mutagenesis,Pollution,Toxicology,General Medicine
Reference104 articles.
1. Arsenic uptake, toxicity, detoxification, and speciation in plants: physiological, biochemical, and molecular aspects;Abbas;Int. J. Environ. Res. Publ. Health,2018
2. Role of genes and metabolites involved in polyamines synthesis pathways and nitric oxide synthase in stomatal closure on Rosa damascena Mill. under drought stress;Adamipour;Plant Physiol. Biochem.,2020
3. Glutathione and its biosynthetic intermediates alleviate cesium stress in arabidopsis;Adams;Front. Plant Sci.,2020
4. Combined kinetin and spermidine treatments ameliorate growth and photosynthetic inhibition in vigna angularis by up-regulating antioxidant and nitrogen metabolism under cadmium stress;Ahanger;Biomolecules,2020
5. Spatial and temporal regulation of the metabolism of reactive oxygen and nitrogen species during the early development of pepper (Capsicum annuum) seedlings;Airaki;Ann. Bot.,2015
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