
Impact of Climate Change on Medicinal and Herbal Plant microRNA
by Kanchanlata Tungare, Parul Johri, Sachidanand Singh, Surojeet Das
1st Edition
Publisher: CRC Press
Book Details
| Print ISBN | 9781032792828 |
| eText ISBN | 9781040412701 |
| Publisher | CRC Press |
| Publishing Year | 2025 |
| Edition | 1st Edition |
| Language | English |
| Pages | 344 |
The 1st Edition of Impact of Climate Change on Medicinal and Herbal Plant microRNA examines how environmental stress affects plant molecular adaptation pathways. Written for researchers, students, and professionals in plant sciences, bioinformatics, and climate studies, this volume establishes how microRNA molecules function under shifting environmental stress to influence plant growth and survival.
The work details microRNA biogenesis, regulation, and degradation, tracing their specific functional roles throughout plant biological processes. It examines stress tolerance mechanisms in medicinal species while extending this analysis across agronomically important crop categories, including cereal, legume, tuber, fruit, biofuel, and beverage crops.
A key feature of the publication is its emphasis on microRNA-mediated bioengineering strategies designed to produce climate-resilient crops. This text provides advanced readers with a clear analytical framework for evaluating plant molecular responses, making it a useful reference for academic programs and institutional research teams.
Table of Contents
Chapter 1: Introduction to Impact of Climate Change on Plant microRNA
Chapter 2: Impact of Climate Change-Induced Abiotic Stress on Plant Growth, Biodiversity, and Adaptations
Chapter 3: The Impact of Heavy Metals on Medicinal Plants and Their Active Components
Chapter 4: From Transcription to Finale: The Intricacies of Plant microRNA Biogenesis, Regulation, and Degradation
Chapter 5: microRNAs and the Myriad of Functions in Plant Biology
Chapter 6: Photosynthesis, Productivity, and Regulatory Roles of miRNA
Chapter 7: Harmony in Stress: Deciphering the Impact of Carbon Dioxide and Temperature on microRNA Expression in Plants
Chapter 8: Abiotic Stress Tolerance in Plants: Targeting microRNAs
Chapter 9: Abiotic Stress-Related Functional Roles of microRNAs in Agronomically Important Cereal and Legume Crops
Chapter 10: Role of microRNA for Abiotic Stress Tolerance in Tuber and Fruit Crops
Chapter 11: Abiotic Stress-Related Functional Roles of microRNAs in Agronomically Important Biofuel and Beverage Crops
Chapter 12: Modulating Plant Responses: Epigenetic Perspectives on Climate Variability
Chapter 13: Emerging Role of miRNA in Genome Stability and Editing
Chapter 14: microRNA-Mediated Bioengineering for Climate Resilience in Crops
Chapter 15: Recent Approaches in Omics for Plant Resilience to Climate Change
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