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Chitosan nanoparticles as combat salinity stress to improve biochemical characteristics and seedling vigor in maize (Zea maize L.)

Abstract
Salt stress is classified as an abiotic stressor and is recognised as a significant contributor to the decline in agricultural output. Nanoparticles have emerged as a prominent material in contemporary agricultural research due to their distinctive physicochemical characteristics. The purpose of this research was to examine the impact of (ChNPs) on the morphological features and biochemical proper...
Keywords
Seedling
Zea mays
Salinity
Agronomy
Chitosan
Biology
Ecology
Biochemistry
Sustainable Development Goals (SDG)
Zero hunger



Chitosan nanoparticles as combat salinity stress to improve biochemical characteristics and seedling vigor in maize (Zea maize L.)

Chitosan nanoparticles as combat salinity stress to improve biochemical characteristics and seedling vigor in maize (Zea maize L.)

Abstract
Salt stress is classified as an abiotic stressor and is recognised as a significant contributor to the decline in agricultural output. Nanoparticles have emerged as a prominent material in contemporary agricultural research due to their distinctive physicochemical characteristics. The purpose of this research was to examine the impact of (ChNPs) on the morphological features and biochemical proper...
Keywords
Seedling
Zea mays
Salinity
Agronomy
Chitosan
Biology
Ecology
Biochemistry
Sustainable Development Goals (SDG)
Zero hunger