Plant biotechnology and genetics : (Record no. 96257)

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fixed length control field 12231nam a2200385 a 4500
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005 - DATE AND TIME OF LATEST TRANSACTION
control field 20260728104805.0
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 250609s2025 nju ob 001 0 eng
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number 9781394217212
Qualifying information cloth
041 ## - LANGUAGE CODE
Language code of text/sound track or separate title eng
042 ## - AUTHENTICATION CODE
Authentication code pcc
050 00 - LIBRARY OF CONGRESS CALL NUMBER
Classification number TP248.27.P55
082 00 - DEWEY DECIMAL CLASSIFICATION NUMBER
Classification number 660.6/5
Edition number 23/eng/20250701
245 00 - TITLE STATEMENT
Title Plant biotechnology and genetics :
Remainder of title principles, techniques, and applications /
Statement of responsibility, etc edited by C. Neal Stewart, Jr., University of Tennessee, Knoxville, United States.
250 ## - EDITION STATEMENT
Edition statement Third edition.
263 ## - PROJECTED PUBLICATION DATE
Projected publication date 2507
264 #1 - PUBLICATION, DISTRIBUTION, ETC. (IMPRINT)
Place of publication, distribution, etc Hoboken, New Jersey :
Name of publisher, distributor, etc Wiley,
Date of publication, distribution, etc [2025]
264 #4 - PUBLICATION, DISTRIBUTION, ETC. (IMPRINT)
Date of publication, distribution, etc ©2025.
300 ## - PHYSICAL DESCRIPTION
Extent xvii, 494 pages :
Other physical details illustrations ;
Dimensions 26 cm
336 ## - CONTENT TYPE
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337 ## - MEDIA TYPE
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504 ## - BIBLIOGRAPHY, ETC. NOTE
Bibliography, etc Includes bibliographical references and index.
505 ## - CONTENTS
Formatted contents note Table of Contents<br/>List of Contributors xv<br/><br/>Preface xvii<br/><br/>1. The Impact of Biotechnology on Plant Agriculture 1<br/>Graham Brookes<br/><br/>1.0. Chapter Summary and Objectives 1<br/><br/>1.1. Introduction 1<br/><br/>1.2. Cultivation of Biotechnology (GM) Crops 2<br/><br/>1.3. Why Farmers Use Biotech Crops 4<br/><br/>1.4. GM Crop Trait Use on Production and Farming 6<br/><br/>1.5. How the Adoption of Plant Biotechnology has Impacted the Environment 7<br/><br/>1.6. Conclusions 13<br/><br/>References 15<br/><br/>2. Mendelian Genetics and Plant Reproduction 17<br/>Matthew D. Halfhill and Suzanne I. Warwick<br/><br/>2.0. Chapter Summary and Objectives 17<br/><br/>2.1. Genetics Overview 17<br/><br/>2.2. Mendelian Genetics 20<br/><br/>2.3. Mitosis and Meiosis 24<br/><br/>2.4. Plant Reproductive Biology 28<br/><br/>2.5. Conclusion 34<br/><br/>Life Box 2.1. Richard A. Dixon 35<br/><br/>Life Box 2.2. Michael L. Arnold 36<br/><br/>References 38<br/><br/>3. Plant Breeding 39<br/>Nicholas A. Tinker and Elroy R. Cober<br/><br/>3.0. Chapter Summary and Objectives 39<br/><br/>3.1. Introduction 40<br/><br/>3.2. Central Concepts in Plant Breeding 41<br/><br/>3.3. Objectives in Plant Breeding 52<br/><br/>3.4. Methods of Plant Breeding 53<br/><br/>3.5. Breeding Enhancements 64<br/><br/>3.6. Conclusions 71<br/><br/>Life Box 3.1. Gurdev Singh Khush 71<br/><br/>Life Box 3.2. P. Stephen Baenziger 73<br/><br/>References 75<br/><br/>4. Plant Development and Physiology 76<br/>Glenda E. Gillaspy and Catherine P. Freed<br/><br/>4.0. Chapter Summary and Objectives 76<br/><br/>4.1. Plant Anatomy and Morphology 77<br/><br/>4.2. Embryogenesis and Seed Germination 78<br/><br/>4.3. Meristems 84<br/><br/>4.4. Leaf Development 87<br/><br/>4.5. Flower Development 90<br/><br/>4.6. Hormone Physiology and Signal Transduction 93<br/><br/>4.7. Conclusions 99<br/><br/>Life Box 4.1. Natasha Raikhel 99<br/><br/>Life Box 4.2. Brenda S.J. Winkel 101<br/><br/>References 103<br/><br/>5. Tissue Culture: The Manipulation of Plant Development 105<br/>Vinitha Cardoza<br/><br/>5.0. Chapter Summary and Objectives 105<br/><br/>5.1. Introduction 105<br/><br/>5.2. History of Tissue Culture 106<br/><br/>5.3. Media and Culture Conditions 107<br/><br/>5.4. Sterile Technique 109<br/><br/>5.5. Culture Conditions and Vessels 111<br/><br/>5.6. Culture Types and Their Uses 113<br/><br/>5.7. Regeneration Methods of Plants in Culture 119<br/><br/>5.8. Rooting of Shoots 122<br/><br/>5.9. Acclimation 122<br/><br/>5.10. Automation in Plant Tissue Culture 123<br/><br/>5.11. Artificial Intelligence (AI) and Machine Learning in Plant Tissue Culture 123<br/><br/>5.12. Problems That Can Occur in Tissue Culture 123<br/><br/>5.13. Conclusions 124<br/><br/>Acknowledgments 124<br/><br/>Life Box 5.1. Vinitha Cardoza 125<br/><br/>Life Box 5.2. Raymond D. Shillito 126<br/><br/>References 129<br/><br/>6. Molecular Genetics of Gene Expression 133<br/>Maria Gallo and Alison K. Flynn<br/><br/>6.0. Chapter Summary and Objectives 133<br/><br/>6.1. The Gene 134<br/><br/>6.2. DNA Packaging into Eukaryotic Chromosomes 134<br/><br/>6.3. Transcription 135<br/><br/>6.4. Translation 144<br/><br/>6.5. Protein Postranslational Modification 150<br/><br/>Life Box 6.1. Maarten Chrispeels 150<br/><br/>Life Box 6.2. Hong S. Moon 152<br/><br/>References 153<br/><br/>7. Plant Systems Biology 155<br/>Wusheng Liu, Yongil Yang, and C. Neal Stewart, Jr.<br/><br/>7.0. Chapter Summary and Objectives 155<br/><br/>7.1. Introduction 156<br/><br/>7.2. Defining Plant Systems Biology 157<br/><br/>7.3. Properties of Plant Systems 158<br/><br/>7.4. A Framework of Plant Systems Biology 160<br/><br/>7.5. Disciplines and Enabling tools of Plant Systems Biology 162<br/><br/>7.6. Conclusions 179<br/><br/>Life Box 7.1. C. Robin Buell 180<br/><br/>Life Box 7.2. Joshua Yuan 182<br/><br/>References 183<br/><br/>8. Recombinant DNA, Vector Design, and Construction 185<br/>Stephen L. Gasior, David G.J. Mann, and Mark D. Curtis<br/><br/>8.0. Chapter Summary and Objectives 185<br/><br/>8.1. Plasmids are Unique Genetic Elements in Nature 186<br/><br/>8.2. DNA Vectors 189<br/><br/>8.3. Recombinant DNA Methods 195<br/><br/>8.4. Vector Design in Plant Research and Trait Development 206<br/><br/>8.5. Vectors for Targeted Genome Manipulations 213<br/><br/>8.6. Prospects 216<br/><br/>Life Box 8.1. David Mann 216<br/><br/>References 218<br/><br/>9. Genes and Traits of Interest 224<br/>Joanna H. Kud and Kenneth L. Korth<br/><br/>9.0. Chapter Summary and Objectives 224<br/><br/>9.1. Introduction 225<br/><br/>9.2. Identifying Genes of Interest Via Omics Technologies 225<br/><br/>9.3. Traits for Improved Crop Production Using Transgenics 228<br/><br/>9.4. Conclusion 245<br/><br/>Life Box 9.1. Tony Shelton 246<br/><br/>References 247<br/><br/>10. Promoters and Marker Genes 249<br/>Wusheng Liu, Debao Huang, C. Neal Stewart, Jr., and Brian Miki<br/><br/>10.0. Chapter Summary and Objectives 249<br/><br/>10.1. Introduction 250<br/><br/>10.2. Promoters 250<br/><br/>10.3. Marker Genes 259<br/><br/>10.4. Marker- Free Strategies 270<br/><br/>10.5. Conclusions 272<br/><br/>Life Box 10.1. Wusheng Liu 274<br/><br/>Life Box 10.2. Yunde Zhao 275<br/><br/>References 277<br/><br/>11. Transgenic Plant Production 282<br/>John J. Finer and Ning Zhang<br/><br/>11.0. Chapter Summary and Objectives 282<br/><br/>11.1. Overview of Plant Transformation 283<br/><br/>11.2. Agrobacterium Tumefaciens 286<br/><br/>11.3. Particle Bombardment 293<br/><br/>11.4. Other Methods of Transformation 297<br/><br/>11.5. The Rush to Publish 300<br/><br/>11.6. A Look to the Future 306<br/><br/>Life Box 11.1. John Finer 306<br/><br/>Life Box 11.2. Kan Wang 308<br/><br/>Life Box 11.3. Ted Klein 310<br/><br/>References 312<br/><br/>12. Analysis of Transgenic Plants 315<br/>C. Neal Stewart, Jr.<br/><br/>12.0. Chapter Summary and Objectives 315<br/><br/>12.1. Essential Elements of Transgenic Plant Analysis 316<br/><br/>12.2. Assays for Transgenicity, Insert Copy Number, and Segregation 317<br/><br/>12.3. Transgene Expression 323<br/><br/>12.4. Knockdown or Knockout Analysis Rather Than Overexpression Analysis 326<br/><br/>12.5. The Relationship Between Molecular Analyses and Phenotype 327<br/><br/>Life Box 12.1. Neal Stewart 327<br/><br/>Life Box 12.2. Nancy A. Reichert 329<br/><br/>References 331<br/><br/>13. Plastid Genetic Engineering 332<br/>Alessandro Occhialini and Scott C. Lenaghan<br/><br/>13.0. Chapter Summary and Objectives 332<br/><br/>13.1. Introduction 333<br/><br/>13.2. Plastid Biology and Molecular Genetics 334<br/><br/>13.3. Plastid Genetic Engineering History and Motivations 336<br/><br/>13.4. Plastome Engineering Versus Nuclear Genome Engineering 336<br/><br/>13.5. Key Components for Plastome Engineering of Plants 338<br/><br/>13.6. Plastome Transformation Vector Design 340<br/><br/>13.7. Beyond Transplastomics: The Use of Episomal Vectors for Minisynplastome and Minichromosome Approaches 347<br/><br/>13.8. Removing DNA from Plastids 349<br/><br/>13.9. The Future of Plastid Engineering 350<br/><br/>Life Box 13.1. Henry Daniell 351<br/><br/>Life Box 13.2. Pal Maliga 354<br/><br/>Life Box 13.3. Alessandro Occhialini 356<br/><br/>Life Box 13.4. Ralph Bock 357<br/><br/>References 358<br/><br/>14. CRISPR- Cas: Genome Editing from Small- Scale to High Throughput for Plant Biology and Biotechnology 366<br/>S.P. Avinash, Mirza J. Baig, and Kutubuddin A. Molla<br/><br/>14.0. Chapter Summary and Objectives 366<br/><br/>14.1. Introduction 367<br/><br/>14.2. Diverse CRISPR Approaches and Tools for Precisely Editing Genomes 371<br/><br/>14.3. Changing Gene Expression by CRISPR 374<br/><br/>14.4. CRISPR Screening for Large- Scale Functional Genomics 376<br/><br/>14.5. CRISPR- Enabled Crop Improvement 377<br/><br/>14.6. Commercialized Genome- Edited Crops 380<br/><br/>14.7. Conclusions 380<br/><br/>Life Box 14.1. Kutubuddin Molla 381<br/><br/>Life Box 14.2. Dan Voytas 382<br/><br/>Life Box 14.3. Yiping Qi 383<br/><br/>References 385<br/><br/>15. Regulations and Biosafety 390<br/>Alan Mchughen and Stuart J. Smyth<br/><br/>15.0. Chapter Summary and Objectives 390<br/><br/>15.1. Introduction 390<br/><br/>15.2. History of Genetic Engineering and its Regulation 392<br/><br/>15.3. Regulation of GE Plants 394<br/><br/>15.4. Regulatory Flaws and Invalid Assumptions 402<br/><br/>15.5. The State of Genome Editing Regulation 406<br/><br/>15.6. Conclusion 409<br/><br/>Life Box 14.1. Alan Mchughen 411<br/><br/>References 412<br/><br/>16. Field Testing of Transgenic Plants: Risk Assessment and Performance 415<br/>Detlef Bartsch, Achim Gathmann, Arti Sinha, and Christiane Saeglitz<br/><br/>16.0. Chapter Summary and Objectives 415<br/><br/>16.1. Introduction 416<br/><br/>16.2. Environmental Risk Assessment Process 416<br/><br/>16.3. An Example Risk Assessment: The Case of Bt Maize 418<br/><br/>16.4. Proof of Safety Versus Proof of Hazard 422<br/><br/>16.5. Modeling the Risk Effects on a Greater Scale 422<br/><br/>16.6. Proof of Benefits: Agronomic Performance 423<br/><br/>16.7. Conclusions 424<br/><br/>Life Box 18.1. Detlef Bartsch 426<br/><br/>References 427<br/><br/>17. Intellectual Property in Agricultural Biotechnology: Strategies for Open Access 429<br/>Gregory Graff, David Jefferson, Monica Alandete-Saez, Cecilia Chi-Ham, Sara Boettiger, and Alan B. Bennett<br/><br/>17.0. Chapter Summary and Objectives 429<br/><br/>17.1. Intellectual Property and Agricultural Biotechnology 430<br/><br/>17.2. The Relationship Between Intellectual Property and Agricultural Research 433<br/><br/>17.3. Patenting Plant Biotechnology: The Anti- Commons Problem 434<br/><br/>17.4. What Is Freedom to Operate? 438<br/><br/>17.5. Strategies for Open Access 441<br/><br/>17.6. Conclusions 443<br/><br/>Life Box 17.1. Alan Bennett 444<br/><br/>Life Box 17.2. Maud Hinchee 445<br/><br/>References 446<br/><br/>18. Why Transgenic Plants Are So Controversial 451<br/>Jennifer Trumbo and Douglas Powell<br/><br/>18.0. Chapter Summary and Objectives 451<br/><br/>18.1. Introduction 452<br/><br/>18.2. Perceptions of Risk 454<br/><br/>18.3. Responses of Fear 456<br/><br/>18.4. Feeding Fear: Case Studies 457<br/><br/>18.5. How Many Benefits Are Enough? 459<br/><br/>18.6. Continuing Debates 460<br/><br/>18.7. Business and Control 462<br/><br/>18.8. Conclusions 462<br/><br/>Life Box 18.1. Wayne Parrott 464<br/><br/>References 465<br/><br/>19. Plant Synthetic Biology 467<br/>Scott C. Lenaghan<br/><br/>19.0. Chapter Summary and Objectives 467<br/><br/>19.1. What is Synthetic Biology? 467<br/><br/>19.2. Design: Plant Synthetic Biology 470<br/><br/>19.3. Build: Components of Plant Synthetic Biology 474<br/><br/>19.4. Test: Components of Plant Synthetic Biology 485<br/><br/>19.5. Conclusion 485<br/><br/>Life Box 19.1. Nicola J. Patron 486<br/><br/>Life Box 19.2. Scott C. Lenaghan 487<br/><br/>References 488<br/><br/>Index 491
520 ## - SUMMARY, ETC.
Summary, etc "This 3rd edition of one of a leading plant sciences textbook features updated key and new chapters covering cutting-edge topics such as genome editing, chloroplast genome engineering, and synthetic biology. Background information on basic plant biology and genetics is covered in the early chapters in order to understand the essential elements of plant biotechnology discussed in later chapters. This book can be used in a junior or senior level course in plant biotechnology or plant genetics, as well as in special topics classes for both undergraduate and graduate students. Each chapter contains questions geared toward facilitating classroom discussions and includes inspirational autobiographical essays from eminent scientists"-- Provided by publisher.
545 0# - BIOGRAPHICAL OR HISTORICAL DATA
Biographical or historical note About the Author<br/>C. Neal Stewart Jr., PhD, holds the Racheff Chair of Excellence in Plant Molecular Genetics and is a Professor in the Department of Plant Sciences at the University of Tennessee, Knoxville. He also serves as co-director of the Center for Agricultural Synthetic Biology, which Stewart co-founded in 2018. In addition to the prior editions of Plant Biotechnology, he has written Weedy and Invasive Plant Genomics, Plant Transformation Technologies, and Research Ethics for Scientists: A Companion for Students, all published by Wiley.
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name as entry element Plant biotechnology
Authority record control number http://id.loc.gov/authorities/subjects/sh87002507
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name as entry element Plant genetics
Authority record control number http://id.loc.gov/authorities/subjects/sh85102745
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name as entry element Transgenic plants
Authority record control number http://id.loc.gov/authorities/subjects/sh90003137
655 ## - INDEX TERM--GENRE/FORM
Genre/form data or focus term .
700 1# - ADDED ENTRY--PERSONAL NAME
Personal name Stewart, C. Neal,
Titles and other words associated with a name Jr.
Relator term editor
Relator code http://id.loc.gov/vocabulary/relators/edt
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Source of classification or shelving scheme
Item type BOOK
Holdings
Withdrawn status Lost status Source of classification or shelving scheme Damaged status Not for loan Permanent Location Current Location Shelving location Date acquired Cost, normal purchase price Inventory number Full call number Barcode Date last seen Price effective from Item type
          COLLEGE LIBRARY COLLEGE LIBRARY SUBJECT REFERENCE 2026-07-03 11301.00 56222 660.65 P6941 2025 CITU-CL-56222 2026-07-28 2026-07-28 BOOK

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