Plant diseases have been a major challenge in agriculture, leading to significant economic losses globally. Nanotechnology has emerged as a promising solution to combat plant diseases, thanks to its unique physicochemical properties. This article aims to review the recent applications of nanotechnology for plant disease management. The article highlights the different nanomaterials used for plant disease management, their mode of action, and their effectiveness. The article concludes that nanotechnology has the potential to revolutionize plant disease management and enhance food security
Approximately 15–18% of crops losses occur as a result of animal pests, while weeds and microbial di...
Plant pathogens are one of the dominating components which restrain crop productivity. Preliminary s...
Every year approximately 30–50% of crops suffer with different kinds of biotic stresses. Rapidly gro...
Plant viruses cause enormous losses in agricultural production accounting for about 47% of the total...
Each year, 20%–40% of crops are lost due to plant pests and pathogens. Existing plant disease manage...
Each year, 20%⁻40% of crops are lost due to plant pests and pathogens. Existing plant disease ...
Nanotechnology is a promising interdisciplinary field of research and its application into agricultu...
Nanotechnology is a promising interdisciplinary field of research and its application into agricultu...
Green synthesis of nano-fertilizers is emerging as a potential strategy and could play a crucial rol...
Green synthesis of nano-fertilizers is emerging as a potential strategy and could play a crucial rol...
Nanotechnology is a promising field of interdisciplinary research and its applications into agricult...
Nanotechnology is an advanced and evolving discipline in the field of science and technology with va...
Nanotechnology plays a critical role in agriculture and its associated management strategies. The em...
The agronomic application of nanotechnology in plants (phytonanotechnology) has the potential to alt...
Plant pathogens are one of the dominating components which restrain crop productivity. Preliminary s...
Approximately 15–18% of crops losses occur as a result of animal pests, while weeds and microbial di...
Plant pathogens are one of the dominating components which restrain crop productivity. Preliminary s...
Every year approximately 30–50% of crops suffer with different kinds of biotic stresses. Rapidly gro...
Plant viruses cause enormous losses in agricultural production accounting for about 47% of the total...
Each year, 20%–40% of crops are lost due to plant pests and pathogens. Existing plant disease manage...
Each year, 20%⁻40% of crops are lost due to plant pests and pathogens. Existing plant disease ...
Nanotechnology is a promising interdisciplinary field of research and its application into agricultu...
Nanotechnology is a promising interdisciplinary field of research and its application into agricultu...
Green synthesis of nano-fertilizers is emerging as a potential strategy and could play a crucial rol...
Green synthesis of nano-fertilizers is emerging as a potential strategy and could play a crucial rol...
Nanotechnology is a promising field of interdisciplinary research and its applications into agricult...
Nanotechnology is an advanced and evolving discipline in the field of science and technology with va...
Nanotechnology plays a critical role in agriculture and its associated management strategies. The em...
The agronomic application of nanotechnology in plants (phytonanotechnology) has the potential to alt...
Plant pathogens are one of the dominating components which restrain crop productivity. Preliminary s...
Approximately 15–18% of crops losses occur as a result of animal pests, while weeds and microbial di...
Plant pathogens are one of the dominating components which restrain crop productivity. Preliminary s...
Every year approximately 30–50% of crops suffer with different kinds of biotic stresses. Rapidly gro...