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Produktbild: Nanotechnology and Microbiology for Sustainable Ag riculture
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Nanotechnology and Microbiology for Sustainable Ag riculture

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

15.10.2026

Herausgeber

Quang D. Nguyen + weitere

Verlag

Wiley

Seitenzahl

560

Maße (L/B)

24,4/17 cm

Sprache

Englisch

ISBN

978-1-119-80849-7

Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

15.10.2026

Herausgeber

Verlag

Wiley

Seitenzahl

560

Maße (L/B)

24,4/17 cm

Sprache

Englisch

ISBN

978-1-119-80849-7

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: gpsr@libri.de

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  • Produktbild: Nanotechnology and Microbiology for Sustainable Ag riculture
  • List of Contributors xix
    Foreword xxvii
    Foreword xxix
    Preface xxxi
    Acknowledgments xxxiii

    1 Nanotechnology and Microbiology for Sustainable Agriculture: An Introduction 1
    Rajeshwari Negi, Babita Sharma, Neelam Yadav, Ashok Yadav, Paridhi Puri, Farhan Zameer, and Ajar Nath Yadav

    1.1 Introduction 1
    1.2 Nanoparticles and Their Types 2
    1.3 Methods of Nanomaterial Synthesis 5
    1.4 Why Use Nanotechnology in Agriculture 6
    1.5 Microbial Nanotechnology and Sustainable Agricultural Development 8
    1.6 Regulatory Policies and Considerations 9
    1.7 Environmental Issues Associated with Microbial Nanoparticles 11
    1.8 Conclusions 12

    2 Nanomaterials in Agriculture and Soil Revitalization: Applications and Challenges 25
    Slimane Mokrani, El-hafid Nabti, Omar Khirennas, and Karim Houali

    2.1 Introduction 25
    2.2 Effect of Nanomaterials on Soil and Plant Systems 26
    2.3 Applications in Agriculture 30
    2.4 Challenges and Opportunities 34
    2.5 Recommendations and Expected Future Aspects 36
    2.6 Conclusions 37

    3 Phosphorus-Solubilizing Microbes and Nanotechnologies for Plant Growth Promotion and Soil Health 45
    Divjot Kour, Babita Sharma, Damini Maithani, Ali Khalaf Ahmed Albaggar, Tanvir Kaur, Abdulaziz M.S. Alqahtani, Sofia Sharief Khan, Hemant Dasila, Neelam Yadav, and Ajar Nath Yadav

    3.1 Introduction 45
    3.2 Phosphorus as an Important Macronutrient for Plants 46
    3.3 Phosphate-Solubilizing Microbes 47
    3.4 Mechanism of Microbial Phosphorus Solubilization 50
    3.5 Phosphorus-Solubilizing Microbes as Bioinoculants for Sustainable Agriculture 52
    3.6 Phosphorus Nanofertilizers in Agriculture 54
    3.7 Conclusion 55

    4 Role of Fungi in the Production of Bioactive Compounds and Nanotechnology 65
    Laith Khalil Tawfeeq Al-Ani, Ivana Mitrovic, Alejandra G. Becerra, Maura Téllez-Téllez, and Lobna Hajji-Hedfi

    4.1 Introduction 65
    4.2 Fungal Diversity 66
    4.3 Types of Fungal Secondary Metabolites 69
    4.4 Fungi in Nanoparticle Biosynthesis 79
    4.5 Conclusions 82

    5 Potential Applications of Cyanobacterial Nanoparticles in Agriculture 95
    Rajeshwari Negi, Babita Sharma, Faezeh Parastesh, Tanvir Kaur, Samrendra Singh Thakur, Subhikshaa Bagavathiappan, Ashok Yadav, Sofia Sharief Khan, Neelam Yadav, Paridhi Puri, and Ajar Nath Yadav

    5.1 Introduction 95
    5.2 Synthesis of Nanoparticles 97
    5.3 Cyanobacteria as a Source of Nanoparticles Synthesis 104
    5.4 Mechanism of Cyanobacteria Mediated Nanoparticles Biosynthesis 108
    5.5 Characterization of Biosynthesized Nanoparticles 109
    5.6 Molecular Insights into Nanoparticle Toxicity 110
    5.7 Applications of Cyanobacterial-based Nanoparticles in Agriculture 111
    5.8 Future Projections of Nanoparticle Synthesis 113
    5.9 Conclusion 114

    6 Role of Beneficial Microbes for Sustainable Agriculture and Environmental Nanotechnology 125
    Chandra Kant Sharma, Harshit Chavda, Saleha Diwan, Vijay Upadhye, Nitin Mahendra Chauhan, and Sunil Tulshiram Hajare

    6.1 Introduction 125
    6.2 Beneficial Microorganisms in Sustainable Agriculture 126
    6.3 Environmental Nanotechnology 132
    6.4 Conclusions 136

    7 Microbial Nanotechnology in Plant Growth Promotion and Crop Protection 141
    Neelam Thakur, Samiksha Jhamta, Simranjeet Kaur, Jaspreet Kaur Brar, Taniya Chauhan, Hanika Kapoor, Avtar Kaur Sidhu, and Ajar Nath Yadav

    7.1 Introduction 141
    7.2 Microorganisms as Nano-factories 143
    7.3 Microbial Nanoparticles in Plant Growth Promotion 144
    7.4 Microbial Nanoparticles in Crop Protection 151
    7.5 The Use of Nanoscale Materials Produced by Microbes Carries Some Risks 155
    7.6 Microbial Nanoparticle Formulations 156
    7.7 Conclusions 157

    8 Microbial Nanotechnology in Biocontrol of Insect Pest 169
    Preety Tomar, Parul Sharma, Yankita Negi, Sakshi Sharma, Vijay Bharti Sharma, and Ajar Nath Yadav

    8.1 Introduction 169
    8.2 Microbial Biosynthesis of Nanoparticles 170
    8.3 Role of Nanotechnology in Agricultural Sustainability 174
    8.4 Nanoparticles as Biopesticides 175
    8.5 Applications Against Insect Pests 176
    8.6 Mechanism of Action of Nanoparticles Against Insects 178
    8.7 Risk Concerns, Regulatory Policies, and Considerations 180
    8.8 Conclusion and Future Perspective 180

    9 Role of Actinomycetes in the Bioactive Synthesis of Nanoparticles 189
    Dibyajit Lahiri, Moupriya Nag, Manoj Singh, Arunava Goswami, Ritwik Banerjee, Dipro Mukherjee, Sayantani Garai, Ankita Dey, and Rina Rani Ray

    9.1 Introduction 189
    9.2 Synthesis of Biogenic Nanoparticles from Actinomycetes 191
    9.3 Nanoparticle (Biogenic) Production by Actinomycetes 191
    9.4 Development of Metal Oxides, Metal-based Nanomaterials, and Nano-antibiotics from Actinomycetes 192
    9.5 Mechanism of Synthesis of NPs by Actinomycetes 192
    9.6 Intracellular and Extracellular Synthesis of NPs by Actinomycetes 193
    9.7 Factors Controlling the Mechanism of Synthesis of NPs 194
    9.8 Actinomycetes NPs and Their Antifungal Activities 194
    9.9 Actinomycetes NPs with Antiparasitic Activity 194
    9.10 Applications of Actinomycetes NPs Based on Biological Grounds 195
    9.11 Synthesis of Biogenic Nanoparticles from Actinomycetes-derived Compounds 196
    9.12 Challenges of Using Metal and Metal Oxide Nanoparticles 197
    9.13 Conclusions 198

    10 Nanotechnology for Genetically Modified Organisms in Food Production 205
    Rahul Nitnavare, Joorie Bhattacharya, and Sougata Ghosh

    10.1 Introduction 205
    10.2 Nanomaterials-Driven Genetic Engineering in Plants 209
    10.3 Cargo Delivery Systems 213
    10.4 RNAi and Nanotechnology 218
    10.5 Conclusion and Future Prospects 220

    11 Bioremediation of Contaminants Using Microbial Nanotechnologies for Agricultural Sustainability 227
    Farhan Zameer, Kounaina Khan, Pratheek Jain, Subrahmanya Padyana, and Ajar Nath Yadav

    11.1 Introduction 227
    11.2 Soil and Its Components Supporting Ecosystem Sustainability 228
    11.3 Major Contaminants in Agricultural Soil 234
    11.4 Role of Nanotechnology in Soil Health 236
    11.5 Microbial-Mediated Bioremediation of Soil Contaminants and Their Mode of Action 238
    11.6 Microbial Nanotechnology Bioremediation Strategies for Soil Contaminants 239
    11.7 Nanotechnology in Mycoremediation 241
    11.8 Nanoparticle-Enhanced Phytoremediation 241
    11.9 Smart Sensors for Monitoring Soil Remediation 242
    11.10 Opportunities in Microbial Nanotech Bioremediation 243
    11.11 Challenges in Microbial Nanotech Bioremediation 244
    11.12 Conclusions and Future Directions 246

    12 Nanoparticles for Bioremediation of Heavy Metals from Agricultural Fields 255
    Dalaq Aiysha and Salma Mukhtar

    12.1 Introduction 255
    12.2 Heavy Metal Contamination in Agricultural Fields 257
    12.3 Conventional Methods for the Removal of Heavy Metals from Agricultural Lands 258
    12.4 Nanoparticles 259
    12.5 Nano-remediation of Soils and Groundwater with Nanoparticles 260
    12.6 Nano-bioremediation Approaches for Heavy Metal-contaminated Agricultural Fields 263
    12.7 Conclusion and Future Scope 269

    13 Biologically Synthesized Nanomaterials and their Antimicrobial Potentials for Crop Protection 279
    Urvashi Mittal, Sarvjeet Kukreja, Nidhi Selwal, Nitu Gautam, and Umesh Goutam

    13.1 Introduction 279
    13.2 Biologically (or Green) Synthesized Nanoparticles 280
    13.3 Interaction and Uptake of Biogenic Nanoparticles with Plants and Microbes 282
    13.4 Mechanisms of Antimicrobial Activity of Biogenic Nanoparticles 284
    13.5 Plant-Based Nanoparticles 285
    13.6 Applications of Biogenic Nanoparticles in Agriculture 291
    13.7 Challenges and Future Prospects 293
    13.8 Conclusion 295

    14 Nanostructures for Immobilization of Agriculturally Used Cells and Enzymes 301
    Nafiseh Sadat Naghavi, Fahimeh Sarami, and Golnoosh Rezaeizadeh

    14.1 Introduction 301
    14.2 Immobilized Whole Cell Microorganisms Used in Agriculture 302
    14.3 Immobilized Microbial Enzymes Used in Agriculture 307
    14.4 Transforming Agricultural Wastes by Immobilized Cells and Enzymes 311
    14.5 Biodegradation of Contaminants from Soil by Immobilized Cells and Enzymes 313
    14.6 Conclusion 315

    15 Nanopesticides and Their Potential Applications for Crop Protection 325
    Kounaina Khan, Farhan Zameer, Pratheek Jain, Subrahmanya Padyana, and Ajar Nath Yadav

    15.1 Introduction 325
    15.2 Synthesis of Nanopesticides 327
    15.3 Types of Nanopesticides 331
    15.4 Mechanism of Nanopesticides 334
    15.5 Applications of Nanopesticides in Crop Protection 337
    15.6 Regulatory Challenges and Future Direction 341
    15.7 Limitations 342
    15.8 Conclusions 342

    16 Nanobiosensors in Agricultural and Environmental Sustainability 349
    Monika Kundu, Shiv Prasad, Shipra Singh, Prameela Krishnan, and Ajar Nath Yadav

    16.1 Introduction 349
    16.2 Biosensor 351
    16.3 The Fusion of Nanotechnology with the Biosensor: Nanobiosensor 352
    16.4 Nanobiosensors to Promote Agricultural Sustainability 359
    16.5 Nanobiosensors for Natural Resource Management and Environmental Sustainability 366
    16.6 Future Prospects and Challenges 368
    16.7 Conclusions 370

    17 Nanotechnology and Genetically Modified Organisms for Agricultural Sustainability 375
    Guillermo Fernandez-Bunster

    17.1 Introduction 375
    17.2 Concept of Sustainability and Others 376
    17.3 Nanotechnology and Sustainable Agriculture 378
    17.4 Consequences of the Use of Nanotechnology in Sustainability 390
    17.5 Genetically Modified Organisms in Sustainable Agriculture 391
    17.6 GMO Uses in Agricultural Sustainability 397
    17.7 Consequences of the Use of GMO in Sustainable Agriculture 401
    17.8 General Considerations for the Use of GMOs and Nanotechnology in Sustainable Agriculture 403
    17.9 Conclusions 406

    18 Global Nanotechnology Research for Agriculture 421
    Kounaina Khan, Farhan Zameer, Pratheek Jain, Subrahmanya Padyana, and Ajar Nath Yadav

    18.1 Introduction 421
    18.2 Nanomaterials in Agriculture 426
    18.3 Nanotechnology for Precision Agriculture 427
    18.4 Sustainable Agriculture: Nanotechnology's Role in Reducing Environmental Impact 428
    18.5 Nanotechnology in Seed Science and Crop Enhancement 430
    18.6 Safety, Toxicology, and Environmental Impact of Nanomaterials 431
    18.7 Global Trends in Nanotechnology Research for Agriculture 432
    18.8 Case Studies: Success Stories and Field Trials 433
    18.9 Challenges and Limitations of Nanotechnology in Agriculture 435
    18.10 Future Outlook: Advancing Nanotechnology for Global Agriculture 436
    18.11 Conclusions 438

    19 Regulatory Aspects of Nanotechnology in the Agriculture Sector 445
    Ayomide Emmanuel Fadiji, Adegboyega Adeniji, and Adedayo Ayodeji Lanrewaju

    19.1 Introduction 445
    19.2 Overview of Nanotechnology in Agriculture 446
    19.3 Regulatory Frameworks for Nanotechnology 449
    19.4 Specific Regulations and Standards for Nanotechnology in Agriculture 453
    19.5 Ethical and Societal Considerations 454
    19.6 Future Directions and Recommendations 459
    19.7 Conclusion 461

    20 Functional Annotation of Microbes and Nanotechnology for Agricultural Productivity 469
    Manali Singh, Shivani Bhutani, and Sagar Chhabra

    20.1 Introduction 469
    20.2 Microbes and their Classification Based on Location 471
    20.3 Nanotechnology: Opportunities and Challenges for Agriculture 476
    20.4 Bacteria in Biogenesis of Nanoparticles 480
    20.5 Functional Annotation and the Importance of Studying Genome Metagenomes and Microbial Structure and Nanomaterial-producing Microbiomes 482
    20.6 Conclusions 486
    Acknowledgment 486

    21 Nanotechnology and Microbiology for Agricultural Sustainability: Current Research and Future Challenges 497
    Rajeshwari Negi, Tanvir Kaur, Samiksha Jhamta, Neelam Yadav, Ashok Yadav, Paridhi Puri, Neelam Thakur, and Ajar Nath Yadav

    21.1 Introduction 497
    21.2 Nanoparticles 498
    21.3 Nanoparticles Interaction with Plants 500
    21.4 The Physiochemical Response of Plants Toward Nanoparticle 502
    21.5 Application of Microbial Nanotechnology in Agriculture 503
    21.6 Microbial Nanotechnology and Agricultural Sustainable Development 507
    21.7 Toxicological Impact of Nanoparticle Risk and Health Hazards in Agriculture Application 508
    21.8 Conclusions and Future Perspectives 510

    References 510
    Index 519