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    Plant Stress Tolerance

    Molecular Mechanisms and Breeding Strategies, Two Volume Set

    AvJen-Tsung Chen

    Taylor & Francis Ltd

    2025

    6 600 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Plant Stress Tolerance: Molecular Mechanisms and Breeding Strategies, Volume One provides effective ways for organizing precision and sustainable agriculture. The methods include the use of advanced molecular techniques covering multiple omics, high-throughput technology, computational biology, epigenetic manipulation, and CRISPR genome editing. These methods can advance the development of high-yield, high-quality, and stress-resilient crops that meet the requirements for supporting global food and nutrition security.The book proposes strategies for omics-assisted and speed breeding techniques, exploring molecular mechanisms of plant abiotic stress caused by temperature, drought, salinity, and various pollutants. These are uncovered by QTL analysis and mapping, genomic selection, functional genomics, multiple omics, high-throughput sequencing, and high-throughput phenotyping, and are integrated into the various systems of crop improvement.Plant Stress Tolerance: Molecular Mechanisms and Breeding Strategies, Volume One presents emerging and comprehensive knowledge and is an ideal reference for students, researchers, teachers, and professors. It inspires ideas for investigations in the fields of plant stress physiology, plant functional genomics, plant multiple omics, plant genetic engineering, systems biology, and crop breeding.Plant Stress Tolerance: Molecular Mechanisms and Breeding Strategies, Volume Two explores methods of precise management of biotic stressors including pests and pathogens. This is based on advanced molecular technologies including mutagenesis, genetic engineering, genome-wide association study, marker-assisted selection, genomic selection, molecular marker-based platforms, functional genomics, multiple omics tools, high-throughput technologies, computational biology, epigenetic manipulation, and clustered regularly interspaced short palindromic repeats (CRISPR)-based genome editing.This book proposes strategies involving immunity-boosting through releasing genetic resources from naturally resistant plants, regulating defense systems by phytohormones, promoting disease tolerance by biostimulants, and nanotechnology such as nanocarriers for managing biotic stressors. These positive approaches help to advance and accelerate breeding programs for disease-tolerant crops against various pests and pathogens.Plant Stress Tolerance: Molecular Mechanisms and Breeding Strategies, Volume Two is an ideal reference for the research fields of plant pathology, plant disease management, plant physiology, plant functional genomics, multiple omics, systems biology, and crop breeding. The book inspires ideas from the reader regarding future research on disease-resilient crops to face the challenge of global climate change and the increasing human population.

    Produktinformation

    • Märke:Taylor & Francis Ltd
    • Utgivningsdatum:2025-02-18
    • Höjd:178 x 254 x undefined mm
    • Vikt:2 004 g
    • Språk:Engelska
    • Antal sidor:1 000
    • Förlag:Taylor & Francis Ltd
    • EAN:9781032935720

    Utforska kategorier

    • Växtböcker inom Djur och Natur
    • Botanik inom Naturvetenskap och teknik
    • Agronomi och lantbruk inom Naturvetenskap och teknik

    Mer om författaren

    Dr. Jen-Tsung Chen is a professor of cell biology at the National University of Kaohsiung in Taiwan. He also teaches genomics, proteomics, plant physiology, and plant biotechnology. Dr. Chen’s research interests include bioactive compounds, chromatography techniques, plant molecular biology, plant biotechnology, bioinformatics, and systems pharmacology. He is an active editor of academic books and journals to advance the exploration of multidisciplinary knowledge involving plant physiology, plant biotechnology, nanotechnology, ethnopharmacology, systems biology, and drug discovery. He serves as an editorial board member and a guest editor in several reputed journals. Dr. Chen published books in collaboration with international publishers on diverse topics such as drug discovery, herbal medicine, medicinal biotechnology, nanotechnology, bioengineering, plant functional genomics, plant speed breeding, CRISPR-based plant genome editing, and artificial intelligence. In 2023, Dr. Chen has been included in the World's Top 2% Scientists by Stanford University.

    Innehållsförteckning

    • Vol 11. Redesigning Photosynthesis: Balancing Yield and Stress TolerancePablo I. Calzadilla, Giles N. Johnson2. Plant Tolerance to Alkaline Salinity: A Gordian Knot to UntieSilvia Busoms, Maria Almira-Casellas, Juan Barceló, Charlotte Poschenrieder3. Metabolic Markers and Metabolite Quantitative Trait Loci (mQTLs) for the Breeding of Crop Quality and ResistanceTzitziki González-Rodríguez, Josaphat Montero-Vargas, Roberto Gamboa-Becerra, Silverio García-Lara, Robert Winkler4. Plants Abiotic Stress Responses: Molecular Mechanisms of Stress Tolerance and Breeding StrategiesJemaa Esseminea, Zhan Xub, Jen-Tsung Chen, Mingnan Qu5. Integration of Artificial Intelligence (AI) and Machine Learning (ML) in Plant BreedingNeha Sharma, Manish Kumar, Nimisha Sharma, Nagendra Kumar Singh6. CRISPR-based Precision Breeding for Crop Improvement: Current Achievements and Future DirectionsDivya Raj Bharti, Biswajit Pramanik, Amitava Paul, Sandip Debnath7. Applications of CRISPR on Improving Plant Growth and Development Through Secondary MetabolismAmardeep Preethi, Sasikumar Janani, Pulliyampatti Gunasekaran Vishnu, Karli Haritha, Sumithran Subhadevi Suhith Mithra, Kalaiyarasan Vijayarani, Puzhakkal Abhirami, Arumugam Vijaya Anand8. Plant Biochemical and Molecular Responses to Extreme TemperatureSantanu Samanta, Aryadeep Roychoudhury9. Molecular Mechanisms and Breeding Strategies for Heat Tolerance in Plants: An UpdateDeepti Srivastava, Sandeep Kumar Singh, Saba Siddiqui, Moh Haris Siddiqui, Deepak Kumar, Md. Shamim, Rashmi Maurya10. Plant Cold Stress Tolerance: Molecular Mechanisms and Breeding StrategiesAnupam Kumaria, Shreni Agrawala, Richa Dasa, Indrani Bhattacharya11. Challenges of Drought Stress: Unveiling Plant Responses and Approaches to Confer ToleranceAsad Azeem, Sumbul Habib, Aqsa Parvaiz, Ghulam Mustafa, Muhammad Sarwar Khan, Faiz Ahmad Joyia12. Harnessing CRISPR/Cas for Enhanced Drought Tolerance and Sustainable Crop ManagementRajaswini Rupali, Nandakumar Vidya, Krishnagowdu Saravanan, Muthukrishnan Anand, Arumugam Vijaya Anand, Muthukrishnan Arun13. Adaptation to Drought Stress in Cereals: A Molecular PerspectiveChayma Ikan, Fatima Ezzahra Soussania, Salma Toubali, Nizar El Mazouni, Rachid Lahlalie, Abdelilah Meddich14. Phytohormones Increase Plant Adaptation under Soil and Water StressesAugustine Antwi-Boasiako, Tuanjie Zhao, Padmore Adu-Antwi, Chunting Zhang, Priscilla Amponsah, Zhang NanNan, Naheeda Begum, Muhammad Khuram Razzaq15. Plant Tolerance Mechanisms to Heavy Metal Stress and Breeding StrategiesBattana Swapna, Srinivasan Kameswaran, Mandala Ramakrishna16. Reducing the Toxicity of Heavy Metals and Metalloids on Grain Crops by Breeding: Current Achievements on Conventional and Molecular Breeding ApproachesFatima El Amerany, Samia Elouali, Youssef Ait Hamdan, Iman Janah, Mohammed Rhazi17. Molecular Aspects of Abiotic Stress Tolerance in Horticultural Crops: Challenges and ProspectsLokesh Thakur, Vinay Kumar Dhiman, Devendra Singh, Vivek Kumar Dhiman, Himanshu Pandey, Avinash Sharma18. Brassicaceae: Stress Responses and Breeding Strategies in Unfriendly EnvironmentsBranka Salopek-Sondi, Mirta Tkalec, Nataša Bauer, Nenad Jasprica, Smiljana Goreta Ban19. Mechanisms of Tolerance to Diverse Environmental Stresses and Adaptive Capacity: Current Achievements in AmaranthSelene Fragoso-Iñiguez, Maryan Hernández-Jiménez, Angelica Barrales-López, Guillermo Antonio Silva-Martínez, Fabila Estefania Tristan-Flores, Laura Foseca-Mendoza, Eduardo Espítia-Rangel, Gerardo Acosta-García20. CRISPR/Cas Technology: A Promising Tool for Enhancing Plant Growth and DevelopmentPuliyampatti Gunasekaran Vishnu, Gunasekaran Arthi, Jothi Dheivasikamani Abidharini, Amardeep Ray Preethi, Palanisamy Sampathkumar, Ramalingam Sivakumar, Saravanan Renuka, Arumugam Vijaya Anand21. CRISPR Tools for Developing Plant Oxidative Stress Tolerance: Protocols, Current Achievements and Future DirectionsGunasekaran Arthi, Venkatachalam Siva Prakash, Marimuthu Oviya, Kalaiyarasan Vijayarani, Natarajan Pushpa, Chenniappan Anchana Devi, K. Vijayalakshmi, Arumugam Vijaya Anand22. Nanoparticle-Enhanced Strategies for Abiotic Stress Tolerance in PlantsAbhishek Singh, Shreni Agrawal, Richa Das, Vishnu D Rajput, Tatiana Minkina, Saglara Mandzhieva, Mohamed S. Elshikh, Hassan Ragab El-Ramady, Abdel Rahman Mohammad Al Tawaha, Karen Ghazaryan23. Nanobiotechnology Approaches for Enhancing Crop Resilience to Salinity StressAbhishek Singh, Shreni Agrawal, Shivangee Solanki, Vishnu D Rajput, Tatiana Minkina, Saglara Mandzhieva, Mohamed S. Elshikh, Hassan Ragab El-Ramady, Abdel Rahman Mohammad Al Tawaha, Karen GhazaryanVol 21. Plant Cuticle Synthesis and Tolerance to StressJuan Carlos Mateos del Amo, Rafael Fernández-Muñoz, Eva Dominguez, Antonio Heredia, Fernando Gallardo2. Disease Resistance in Crops: Molecular Mechanisms and Breeding StrategiesFatima Ezzahra Soussani, Chayma Ikan, Hanane Boutaj, Wissal Benaffari, Rachid Lahlali, Abdelilah Meddich3. Mutagenesis: A Promising Strategy for Elevating Plant Tolerance to Biotic StressMohd Ali, Sandeep Kour, Deepak kumar, Roohi Sharma, Parkirti, Vikram, Rajesh Kumari Manhas, Harish Changotra, Puja Ohri4. Enhancing the resilience of apple to fire blight and winter injury in a warming worldDustin E. MacLean, Yunfei Jiang, Rachid Lahlali, Ian R. Willick5. Recent advancement in Genetic engineering techniques in disease resistance of crops: An outlookLicon Kumar Acharya, Suryakant Manik, Madhuri Pradhan, Ajanta Birah, M.K Khokar, Debjyoti Majumder, Akbar Hossain6. Phytohormones: Crucial factors for plant stress tolerancePriyanka Saha, Bishal Debnath, Neha Sharma, Suman Dutta, Anamika Barman, Anurag Bera, Swagata Mandal7. Integration of Multi-omics Approaches and Speed Breeding for Plant Stress Tolerance: Challenges and OpportunitiesAsad Azeem, Furqan Tayyab, Ghulam Mustafa, Muhammad Sarwar Khan, Faiz Ahmad Joyia8. Understanding Stress-Related Genes and the Role of Biostimulants in Biotic and Abiotic Stress Response to Improve Plant Breeding and Cultivation MethodsK. Varun, B. S. Lakshmi9. ABC proteins as regulators of plant tolerance to biotic and abiotic stressesGohar Sahakyan, Naira Sahakyan10. Plant genome editing for pest management: Current achievements and future directionsProdipto Bishnu Angon, Md. Shafiul Islam, Sharah Jabeen Mou, Arpita Roy, Md. Inzamam-Ul-Haque, Akivha Akter Sweety, Monisha Mondol11. Plant genome editing for viral disease management: Current achievements and future directionsShitosri Mondal, Prodipto Bishnu Angon, Md. Shakil Uddin, Arpan Das, Monisha Mondol, Md. Shafiul Islam12. CRISPR plants against fungal diseases: Methods and applicationsLara Jadhav, Richa Das, Shreni Agrawal, Indrani Bhattacharya, Pradeep Kumar, Amit Kumar Singh, Vishnu D Rajput, Tatiana Minkina, Kavindra Nath Tiwari, Sunil Kumar Mishra13. Plant Bacterial Disease Tolerance: Molecular Mechanisms and Breeding StrategiesAbdul Razak Ahmed, Kübra Budak Tek, Mümin Ibrahim Tek14. Alternative strategies to control bacterial diseases in plantsKhadija Benamar, Ikram Legrifi, Mohammed Radi, Kaoutar Bourak, Salma Benchlih, Tourya Sagouti, Rachid Lahlali15. Beneficial Microbes for Phytonematode Control in Vegetable CropsSalah-Eddine Laasli, Najwa Seddiqi Kallali, Ikram Leghrifi, Fouad Mokrini, Abdelfattah Dababat, Rachid Lahlali16. The role of microbial consortia in controlling soilborne pathogensOumaima Benaissa, Ikram Legrifi, Salah-Eddine Laasli, Kaoutar Bourak, Tourya Sagouti, Zineb Belabess, Rachid Lahlali17. Molecular Mechanisms and Breeding Strategies for Inset Pest Resistance in Fruit CropsPriscilla Amponsah, Augustine Antwi-Boasiako, Justice Frimpong Amankwahd, Muhammad Khuram Razzaq18. Physiological and molecular mechanism of insect-herbivory tolerance in plants: A potential tool for resistance breedingKaushik Pramanik, Amit Layek, Durga Mahalanobish, Debashis Roy, Debjyoti Majumder