
Nano-Delivering Plant Biostimulants and Anti-Pathogenic Agents
by Jen-Tsung Chen
1st Edition
Publisher: Elsevier
Book Details
| Print ISBN | 9780443438141 |
| eText ISBN | 9780443438158 |
| Publisher | Elsevier |
| Publishing Year | 2026 |
| Edition | 1st Edition |
| Language | English |
Nano-Delivering Plant Biostimulants and Anti-Pathogenic Agents, 1st Edition, analyzes the strategic application of nanotechnology to strengthen plant disease resilience. Published by Elsevier in 2026, this volume presents fundamental principles and applied methods for deploying engineered nanoparticles directly against plant pathogens within modern agricultural systems.
The thematic progression moves from basic nanoparticle characterization to direct therapeutic application. Content covers specific inorganic and organic formulations, focusing on silver, metalloid, and carbon nanomaterials structured for plant protection. Readers examine nanoparticle synthesis techniques, structural properties, and physical penetration pathways within plant tissues, alongside the specific cellular mechanics involved when neutralizing invasive phytopathogens.
This academic reference supports researchers and advanced scholars in plant biology, plant biotic stress physiology, plant biotechnology, agroecosystems, and material sciences. By connecting nanomaterial design directly with biological defense responses, the volume offers clear scientific context for investigating targeted antimicrobial delivery systems in plant science laboratories.
Table of Contents
Chapter Section 1: Nanoparticles for Combating Plant Diseases: Fundamentals and Mechanisms
Chapter 1: Engineered Nanoparticles in Plant Interactions: Epigenetic Mechanisms and Transgenerational Impacts
Chapter 2: Engineered Nanoparticles in Plant Pathology: Synthesis, Types, and Concepts
Chapter 3: Engineered Nanoparticles and Plant–Pathogen Interactions: Penetration, Transport, and Action
Chapter 4: Nanoparticles for Modulating Plant Immunity against Pathogens: Mechanistic Insights and Prospects
Chapter Section 2: Nanocarriers in Plant Disease Management
Chapter 5: Nanotechnology-Enabled Pesticide Delivery for Sustainable Plant Protection
Chapter 6: Nanoparticles and Growth Regulators for Plant Disease Management: Molecular Aspects and Applications
Chapter 7: Nanoparticles and Biostimulants for Sustainable Agriculture: Impacts on Plant Disease Management
Chapter 8: Engineered Nano-Carriers Delivering Antimicrobial Agents against Plant Diseases
Chapter 9: Silver Nanoparticles for Plant Disease Management
Chapter 10: Carbon Nanomaterials in Plant Disease Management: A Sustainable Nano-Bio Interface
Chapter 11: Green Nanoparticles in Plant Fungal Disease Management
Chapter Section 3: Nano-Driven Biostimulants in Plant Disease Management
Chapter 12: Biostimulants and Nanoparticle-Enabled Resilience to Bacterial Diseases in Plants
Chapter 13: Biostimulants and Nanoparticle-Enabled Resilience to Viral Diseases in Plants
Chapter 14: Plant Resilience to Fungal Diseases: Roles of Biostimulants and Nanoparticles
Chapter 15: Selenium Nanoparticles as Biostimulants in Plant Growth Regulation: Uptake, Transport, and Action
Chapter Section 4: Nano-Enabled Agricultural Sustainability, Crop Resilience, and Ethical Considerations
Chapter 16: Nanoparticles for Controlling Weeds and Arthropod Pests
Chapter 17: Selenium Nanoparticles for the Management of Phytopathogenic Fungi
Chapter 18: Nanofertilizers: Revolutionizing Sustainable Agriculture for the Future
Chapter 19: Nanopesticides: Transforming Sustainable Crop Protection
Chapter 20: Integrating Nano-Biosensors into Plants: A Smart Approach for Plant Disease Management to Enhance Agricultural Resilience
Chapter 21: Ethical Considerations and Regulations in Nano-Agrobiotechnology
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