This book provides promising solutions to climate change and addresses global food security challenges. Nanomaterials have unique properties that impact plant growth and development and support sustainable development in the agricultural sector. This book focuses on the epigenetic effects and interaction between nanomaterials and plants at the cellular level. It delves deeper into the transgenerational interactions of nanomaterials with plant cells and their implications for sustainable crop production. The book highlights the transgenerational impact of nanomaterials on various cellular mechanisms and the efficiency of water absorption and different nutrients. Also, it describes the transgenerational effect of nanomaterials on cellular molecules such as carbohydrates, lipids, nucleic acids, proteins, hormones, and antioxidants. In addition, it provides a contemporary understanding of the epigenetic mechanisms for using nanomaterials that regulate plant development and response to biotic and abiotic stresses as well as improving quantitative and qualitative indicators of plants. The book consists of 16 chapters grouped in 3 parts. Part I: Cellular mechanisms, Part II: Cellular macromolecules, and Part III: Agricultural implications. Chapters present the transgenerational impact of nanomaterials on morphological, physicochemical, and anatomical changes and their effect on plant growth and productivity. Chapters are written by an assembly of internationally recognized scientists and subjected to a rigorous review process to ensure quality presentation and scientific precision. The chapter begins with an introduction that covers similar contexts and includes a detailed discussion of the topic accompanied by high-quality color images, diagrams, and relevant details, and concludes with recommendations for future study directions. The book is considered a valuable reference source for professionals and researchers working in plant sciences with an interest in nanotechnology. The book is also an invaluable reference source for graduate students involved in plant biotechnology research, especially in plant cellular interactions, plant biology, epigenetics, and nano-agriculture.
This book provides promising solutions to climate change and addresses global food security challenges. Nanomaterials have unique properties that impact plant growth and development and support sustainable development in the agricultural sector. This book focuses on the epigenetic effects and interaction between nanomaterials and plants at the cellular level. It delves deeper into the transgenerational interactions of nanomaterials with plant cells and their implications for sustainable crop production. The book highlights the transgenerational impact of nanomaterials on various cellular mechanisms and the efficiency of water absorption and different nutrients. Also, it describes the transgenerational effect of nanomaterials on cellular molecules such as carbohydrates, lipids, nucleic acids, proteins, hormones, and antioxidants. In addition, it provides a contemporary understanding of the epigenetic mechanisms for using nanomaterials that regulate plant development and response to biotic and abiotic stresses as well as improving quantitative and qualitative indicators of plants. The book consists of 16 chapters grouped in 3 parts. Part I: Cellular mechanisms, Part II: Cellular macromolecules, and Part III: Agricultural implications. Chapters present the transgenerational impact of nanomaterials on morphological, physicochemical, and anatomical changes and their effect on plant growth and productivity. Chapters are written by an assembly of internationally recognized scientists and subjected to a rigorous review process to ensure quality presentation and scientific precision. The chapter begins with an introduction that covers similar contexts and includes a detailed discussion of the topic accompanied by high-quality color images, diagrams, and relevant details, and concludes with recommendations for future study directions. The book is considered a valuable reference source for professionals and researchers working in plant sciences with an interest in nanotechnology. The book is also an invaluable reference source for graduate students involved in plant biotechnology research, especially in plant cellular interactions, plant biology, epigenetics, and nano-agriculture.
Lina M. Alnaddaf
Transgenerational epigenetic Nanomaterials in agriculture Plant cellular mechanisms Nano-agriculture Sustainable crop production Epigenetic regulation Plant biotechnology