The role of nanoparticles in plant biochemical, physiological, and molecular responses under drought stress: A review
Drought stress (DS) is a serious challenge for sustaining global crop production and food
security. Nanoparticles (NPs) have emerged as an excellent tool to enhance crop production …
security. Nanoparticles (NPs) have emerged as an excellent tool to enhance crop production …
Foliar Application of Zinc Oxide Nanoparticles Promotes Drought Stress Tolerance in Eggplant (Solanum melongena L.)
Water shortage and salinity are major challenges for sustaining global food security. Using
nutrients in the nano-scale formulation including zinc oxide nanoparticles (ZnO NP) is a …
nutrients in the nano-scale formulation including zinc oxide nanoparticles (ZnO NP) is a …
Nano-iron oxide accelerates growth, yield, and quality of Glycine max seed in water deficits
Drought is one of the most destructive abiotic stresses that impact the growth, physiology,
yield, and nutritional quality of seeds of crop plants. In modern agriculture, the use of …
yield, and nutritional quality of seeds of crop plants. In modern agriculture, the use of …
Biogenic synthesis of zinc nanoparticles, their applications, and toxicity prospects
S Rani, P Kumar, P Dahiya, AS Dang… - Frontiers in …, 2022 - frontiersin.org
Nanofertilizers effectively deliver the micronutrients besides reducing the phytotoxicity and
environmental damage associated with chemical fertilizers. Zinc, an essential micronutrient …
environmental damage associated with chemical fertilizers. Zinc, an essential micronutrient …
Foliar Applications of ZnO and SiO2 Nanoparticles Mitigate Water Deficit and Enhance Potato Yield and Quality Traits
MF Seleiman, WA Al-Selwey, AA Ibrahim, M Shady… - Agronomy, 2023 - mdpi.com
The yield and quality of field crops are affected by abiotic stresses such as water deficit,
which can negatively impact crop growth, productivity, and quality. However …
which can negatively impact crop growth, productivity, and quality. However …
Effect of zinc oxide nanoparticles synthesized from Carya illinoinensis leaf extract on growth and antioxidant properties of mustard (Brassica juncea)
Background The sustainability of crop production is impacted by climate change and land
degradation, and the advanced application of nanotechnology is of paramount importance …
degradation, and the advanced application of nanotechnology is of paramount importance …
Soil and foliar applications of zinc sulfate and iron sulfate alleviate the destructive impacts of drought stress in wheat
Water deficit is a major abiotic stress that devastatingly affects wheat growth and production,
particularly in arid environments. Moreover, drought is expected to become more frequent …
particularly in arid environments. Moreover, drought is expected to become more frequent …
Effect of biological synthesis of nanoparticles from Penicillium chrysogenum as well as traditional salt and chemical nanoparticles of zinc on canola plant oil …
With the rapid advancement of nanotechnologies, it is more likely that biological systems
may be exposed to an excessive amount of nanoparticles (NPs). The effect of NPs on plants …
may be exposed to an excessive amount of nanoparticles (NPs). The effect of NPs on plants …
Rebalance the Nutritional Status and the Productivity of High CaCO3-Stressed Sweet Potato Plants by Foliar Nourishment with Zinc Oxide Nanoparticles and …
The use of nano-fertilizers and antioxidants for specific crops to minimize the negative effect
of abiotic stresses is imperative. Two field experiments were fulfilled during two summer …
of abiotic stresses is imperative. Two field experiments were fulfilled during two summer …
Harnessing nanobiotechnology for drought stress: transforming agriculture's future; what, why and how?
Nanobiotechnology has received tremendous attention in recent years owing to its wide
range of applications in various fields. The growing problem of drought stress (DS) seriously …
range of applications in various fields. The growing problem of drought stress (DS) seriously …