Area of research
Pollution · Plant Science
Research interest
Research interests include Biology, Superoxide dismutase, Environmental science, Oryza sativa, Oxidative stress, and Arsenic.
Adaptive Strategies of Carpet Grass to Drought: Insights from Physiological and Antioxidant Responses
Biochar-assisted remediation of contaminated soils under changing climate
Ionic and nano calcium to reduce cadmium and arsenic toxicity in plants: Review of mechanisms and potentials
Assessment of rice genotypes through the lens of morpho-physiological and biochemical traits in response to arsenic stress
Exposure to toxic cadmium concentration induce physiological and molecular mechanisms alleviating herbivory infestation in Wedelia
Climate change in interaction with global carbon cycle
Harnessing soil carbon sequestration to address climate change challenges in agriculture
Zinc oxide nanoparticles mitigated the arsenic induced oxidative stress through modulation of physio-biochemical aspects and nutritional ions homeostasis in rice (Oryza sativa L.)
Salicylic acid-doped iron nano-biostimulants potentiate defense responses and suppress Fusarium wilt in watermelon
Silicon nanoparticles alleviate cadmium toxicity in rice (Oryza sativa L.) by modulating the nutritional profile and triggering stress-responsive genetic mechanisms
Zinc and nano zinc mediated alleviation of heavy metals and metalloids in plants: an overview
RETRACTED: Melatonin and salicylic acid synergistically improve arsenic induced oxidative stress tolerance in ornamental sword lily
Exogenous foliar application of melatonin mitigates salt induced oxidative stress and promotes growth in Gerbera jamosonii
Preharvest melatonin application mitigates arsenic-induced oxidative stress and improves vase life of tuberose (Polianthes tuberosa L.) cut flowers
Bioengineered chitosan-iron nanocomposite controls bacterial leaf blight disease by modulating plant defense response and nutritional status of rice (Oryza sativa L.)