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Silicon and Nano-silicon in Environmental Stress Management and Crop Quality Improvement: Progress and Prospects

Silicon and Nano-silicon in Environmental Stress Management and Crop Quality Improvement: Progress and Prospects

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  • More about Silicon and Nano-silicon in Environmental Stress Management and Crop Quality Improvement: Progress and Prospects

Silicon and Nano-silicon in Environmental Stress Management and Crop Quality Improvement: Progress and Prospects provides an overview of the latest understanding of silicon- and nano-silicon-mediated environmental stress tolerance and crop quality improvements in plants. It covers silicon-induced biotic and abiotic stress tolerance and nano-silicon-mediated approaches, making it a valuable resource for nanotechnology in agriculture.

Format: Paperback / softback
Length: 396 pages
Publication date: 22 April 2022
Publisher: Elsevier Science & Technology


Silicon and Nano-silicon in Environmental Stress Management and Crop Quality Improvement: Progress and Prospects presents a comprehensive exploration of the cutting-edge knowledge regarding the physiological, biochemical, and molecular underpinnings of silicon- and nano-silicon-facilitated environmental stress tolerance and crop quality enhancements in plants. This comprehensive volume not only delves into the realm of silicon-induced biotic and abiotic stress tolerance in crops but also pioneers the inclusion of nano-silicon-mediated approaches to environmental stress tolerance in crops. Given the rising prominence of nanotechnology as a powerful tool for boosting agricultural productivity, coupled with the substantial growth in the production and applications of nanoparticles (NPs) across numerous industries, this book emerges as a valuable resource.

The book begins by providing a foundational overview of silicon and nano-silicon in environmental stress management and crop quality improvement. It delves into the mechanisms by which silicon and nano-silicon confer stress tolerance in plants, including their role in regulating gene expression, enhancing photosynthesis, and modulating cellular processes. The authors also discuss the potential applications of silicon and nano-silicon in improving crop yield, quality, and resistance to various environmental stresses, such as drought, salinity, and pests.

In the subsequent chapters, the book explores the physiological, biochemical, and molecular mechanisms underlying silicon- and nano-silicon-mediated environmental stress tolerance in crops. It discusses the role of silicon in modulating plant growth and development, as well as its interactions with other nutrients and environmental factors. The authors also examine the role of nano-silicon in enhancing the uptake and utilization of silicon by plants, as well as its potential to improve nutrient transport and metabolism.

The book further explores the molecular mechanisms involved in silicon- and nano-silicon-mediated environmental stress tolerance. It discusses the role of transcription factors, epigenetic regulation, and signaling pathways in regulating the expression of stress-responsive genes and the development of stress tolerance. The authors also explore the role of non-coding RNAs, such as microRNAs and long non-coding RNAs, in mediating silicon- and nano-silicon-induced stress responses.

In addition to its theoretical insights, the book provides practical applications of silicon and nano-silicon in environmental stress management and crop quality improvement. It discusses the use of silicon- and nano-silicon-based fertilizers, amendments, and coatings to enhance crop growth and productivity. The authors also explore the potential of silicon and nano-silicon in developing sustainable agriculture practices, such as precision agriculture and conservation tillage.

The book concludes by summarizing the progress made in the field and highlighting the prospects for future research and development. It emphasizes the need for continued investment in research to enhance our understanding of the physiological, biochemical, and molecular mechanisms underlying silicon- and nano-silicon-mediated environmental stress tolerance and crop quality improvement.

Silicon and Nano-silicon in Environmental Stress Management and Crop Quality Improvement: Progress and Prospects is a valuable resource for researchers, scientists, and practitioners in the fields of agriculture, horticulture, and environmental science. It provides a comprehensive and up-to-date overview of the latest understanding of silicon- and nano-silicon-mediated environmental stress tolerance and crop quality improvements in plants. The book is well-organized, accessible, and filled with insightful information that will be of great interest to a wide range of readers.

In conclusion, Silicon and Nano-silicon in Environmental Stress Management and Crop Quality Improvement: Progress and Prospects is a groundbreaking work that sheds light on the potential of silicon and nano-silicon to enhance agricultural productivity and sustainability. The book provides a comprehensive exploration of the physiological, biochemical, and molecular mechanisms underlying silicon- and nano-silicon-mediated environmental stress tolerance and crop quality improvements in plants. By highlighting the practical applications of silicon and nano-silicon in environmental stress management and crop quality improvement, the book offers valuable insights for researchers, scientists, and practitioners in the fields of agriculture, horticulture, and environmental science. The book is a must-read for anyone interested in advancing our understanding of silicon- and nano-silicon-mediated environmental stress tolerance and crop quality improvement.


Dimension: 235 x 191 (mm)
ISBN-13: 9780323912259

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