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  • © 2015

Recent Advancements in Gene Expression and Enabling Technologies in Crop Plants

  • Highlights examples of technologies successfully used in diverse crop plants.
  • Review articles from leading scientists in academia and industry describe the latest research and development in expressing heterologous proteins in crop plants to introduce novel traits or useful products
  • Serves as a reference for implemented enabling technologies as well as the potential for the next generation of cutting edge technologies
  • Includes supplementary material: sn.pub/extras

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Table of contents (17 chapters)

  1. Front Matter

    Pages i-xxiv
  2. Corn and Soybean

    1. Front Matter

      Pages 1-1
    2. Maize Protein Expression

      • Albert Lu, Scott Diehn, Mark Cigan
      Pages 3-40
    3. Plant Trait Gene Expression Cassette Design

      • Michael Nuccio, Xi Chen, Jared Conville, Ailing Zhou, Xiaomei Liu
      Pages 41-77
    4. Strategies to Maximize Recombinant Protein Expression in Maize Kernels

      • John A. Howard, Elizabeth E. Hood
      Pages 79-129
    5. Breeding and Biotech Approaches Towards Improving Yield in Soybean

      • Dhanalakshmi Ramachandra, Savitha Madappa, Jonathan Phillips, Paul Loida, Balasulojini Karunanandaa
      Pages 131-192
    6. Towards Using Biotechnology to Modify Soybean Seeds as Protein Bioreactors

      • Eliot M. Herman, Monica A. Schmidt
      Pages 193-212
    7. Herbicide Tolerance

      • Jintai Huang, Christine Ellis, Brian Hauge, Youlin Qi, Marguerite J. Varagona
      Pages 213-237
  3. Other Economically Important Crops

    1. Front Matter

      Pages 239-239
    2. Sorghum Transformation: Achievements, Challenges, and Perspectives

      • Kasi Azhakanandam, Zhanyuan J. Zhang
      Pages 291-312
    3. Biotechnology for Insect Pest Management in Vegetable Crops

      • Rohini Sreevathsa, Amolkumar U. Solanke, P. Ananda Kumar
      Pages 313-340
  4. Enabling Technologies

    1. Front Matter

      Pages 361-361
    2. Zinc Finger Nuclease-Mediated Gene Targeting in Plants

      • Joseph F. Petolino, Lakshmi Sastry-Dent, J. Pon Samuel
      Pages 363-381
    3. Engineered Minichromosome Technology in Plants

      • James A. Birchler
      Pages 383-389
    4. In Planta Transient Expression Systems for Monocots

      • Wing-Sham Lee, Kim E. Hammond-Kosack, Kostya Kanyuka
      Pages 391-422
    5. Recent Advances in In Planta Transient Expression and Silencing Systems for Soybean Using Viral Vectors

      • Steven A. Whitham, Alan L. Eggenberger, Chunquan Zhang, R. V. Chowda-Reddy, Kathleen M. Martin, John H. Hill
      Pages 423-451
  5. Erratum to: Herbicide Tolerance

    • Jintai Huang, Christine Ellis, Brian Hauge, Youlin Qi, Marguerite J. Varagona
    Pages E1-E1

About this book

In this book, authors who are experts in their fields describe current advances on commercial crops and key enabling technologies that will underpin future advances in biotechnology. They discuss state of the art discoveries as well as future challenges. Tremendous progress has been made in introducing novel genes and traits into plant genomes since the first creation of transgenic plants thirty years ago, and the first commercialization of genetically modified maize in 1996. Consequently, cultivation of biotech crops with useful traits has increased more than 100-fold from 1.7 million hectares in 1996 to over 175 million hectares globally in 2013. This achievement has been made possible by continued advances in understanding the basic molecular biology of regulatory sequences to modulate gene expression, enhancement of protein synthesis and new technologies for transformation of crop plants.

This book has three sections that encompass knowledge on genetically modified (GM) food crops that are currently used by consumers, those that are anticipated to reach the market place in the near future and enabling technologies that will facilitate the development of next generation GM crops. Section I focuses only on genetically modified maize and soybean (3 chapters each), while Section II discusses the GM food crops rice, wheat, sorghum, vegetables and sugar cane. Section III covers exciting recent developments in several novel enabling technologies, including gene targeting, minichromosomes, and in planta transient expression systems.                                                                 

Reviews

                                                                                                    

Editors and Affiliations

  • Syngenta Biotechnology Inc., Research Triangle Park, USA

    Kasi Azhakanandam

  • Syngenta Biotechnology, Inc., Research Triangle Park, USA

    Aron Silverstone

  • Departments of Biochemistry and Pathology, University of Pennsylvania, Philadelphia, USA

    Henry Daniell

  • Plant and Crop Sciences Division, University of Nottingham School of Biosciences, Loughborough, United Kingdom

    Michael R. Davey

About the editors

Kasi Azhakanandam

Kasi Azhakanandam earned his Bachelor, Master and M. Phil. Degrees in Biology from the University of Madras, India and a Ph.D. in Plant Biotechnology from the University of Nottingham, UK. He worked as a Guest Lecturer at Madras Christian College for a short period before joining  Mahyco, India, as a Deputy Chief Scientist/Principal Investigator, where he established a crop transformation laboratory. He lead a team which established transformation in commercial Indica rice, Indian cotton varieties and six different vegetable crops, including Bt eggplant; these are waiting for approval for commercial cultivation in India. He also successfully produced marker-free rice and vegetable crops. Following his postdoctoral work related to vaccine production for cervical cancer at North Carolina State University, Dr. Azhakanandam joined Syngenta Biotechnology, Inc., at Research Triangle Park, NC as a Staff Scientist III. He has worked on a range of projects to improve crops through genetic engineering, and currently leads a technical team for developing new traits for corn.

Aron Silverstone

Aron Silverstone gained a Bachelor’s Degree in Biology from Harvard University, and a Ph.D. in Plant Physiology from the University of California, Davis. He conducted his postdoctoral research at Duke University’s Department of Botany, studying gibberellin biosynthesis and response. Following his postdoctoral work, Dr. Silverstone joined Syngenta Biotechnology, Inc., at Research Triangle Park, NC as a Staff Scientist I. He has worked on several projects to improve crops through genetic engineering, and is currently the global project manager for soybean traits.

Henry Daniell

Henry Daniell, received his education in India, and is currently a Professor and Director of Translational Research at the University of Pennsylvania.  He is a Fellow of the American Association for the Advancement of Science and a foreign member of the Italian National Academy of Sciences (14th American to be inducted in the past 230 years). He is the Editor in Chief of the Plant Biotechnology Journal, Oxford, UK.  Dr. Daniell is the recipient of several awards, including the American Diabetes Association Award, Bayer Hemophilia Global Award, and Bill and Melinda Gates Foundation Award, for his scientific contributions. He is recognized for pioneering chloroplast genetic engineering as a new platform to produce and deliver orally low cost vaccines and biopharmaceuticals bioencapsulated in plant cells. His invention was ranked by Nature Biotechnology among the top ten inventions of the past decade and among Biomed Central’s Hot 100 authors in the world. He has more than 150 published patents and over 200 scientific publications.

Michael R. Davey

Michael Davey has a B.Sc. Honours  Degree in Botany from University College, Swansea, Wales, and a Ph.D. from the University of  Leicester, UK. In 1970, he was appointed to a research position at the University of Nottingham, UK where he continued his work on plant ultrastructure and gene transfer techniques. He has published extensively on plant cell culture and genetic engineering, and holds an Honorary Lectureship in the School of Biosciences, University of Nottingham.                                                        

Bibliographic Information

  • Book Title: Recent Advancements in Gene Expression and Enabling Technologies in Crop Plants

  • Editors: Kasi Azhakanandam, Aron Silverstone, Henry Daniell, Michael R. Davey

  • DOI: https://doi.org/10.1007/978-1-4939-2202-4

  • Publisher: Springer New York, NY

  • eBook Packages: Biomedical and Life Sciences, Biomedical and Life Sciences (R0)

  • Copyright Information: Springer Science+Business Media, LLC 2015

  • Hardcover ISBN: 978-1-4939-2201-7

  • Softcover ISBN: 978-1-4939-4447-7

  • eBook ISBN: 978-1-4939-2202-4

  • Edition Number: 1

  • Number of Pages: XXIV, 455

  • Number of Illustrations: 16 b/w illustrations, 39 illustrations in colour

  • Topics: Plant Genetics and Genomics, Plant Breeding/Biotechnology, Protein Science

Buy it now

Buying options

eBook USD 129.00
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 169.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book USD 169.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access