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Advances in plant transgenicsmethods...
~
Sathishkumar, Ramalingam.
Advances in plant transgenicsmethods and applications /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Advances in plant transgenicsedited by Ramalingam Sathishkumar ... [et al.].
其他題名:
methods and applications /
其他作者:
Sathishkumar, Ramalingam.
出版者:
Singapore :Springer Singapore :2019.
面頁冊數:
xxii, 366 p. :ill. (some col.), digital ;24 cm.
Contained By:
Springer eBooks
標題:
Plant genetic engineering.
電子資源:
https://doi.org/10.1007/978-981-13-9624-3
ISBN:
9789811396243$q(electronic bk.)
Advances in plant transgenicsmethods and applications /
Advances in plant transgenics
methods and applications /[electronic resource] :edited by Ramalingam Sathishkumar ... [et al.]. - Singapore :Springer Singapore :2019. - xxii, 366 p. :ill. (some col.), digital ;24 cm.
Chapter 1. Plant Tissue Culture and DNA Delivery Methods -- Chapter 2. Cell Cultures and Hairy Roots as Platform for Production of High Value Metabolites: Current Approaches, Limitations and Future Prospects -- Chapter 3. Integrating Bioinformatics and Omics tools for systems analysis of abiotic stress tolerance in Oryza sativa (L.) -- Chapter 4. Green Biotechnology: A brief update on Plastid Genome Engineering -- Chapter 5. New Generation Transformation Vectors -- 6 Recent Developments in Generation of Marker Free Transgenic Plants -- Chapter 7. Applications of Genome Engineering/Editing Tools in Plants -- Chapter 8. High Throughput Analytical Techniques to Screen Plant Transgenics -- Chapter 9. Transgenic Technologies and their Potential Application in Horticultural Crop Improvement -- Chapter 10. Commercial Application of Transgenic Plants in Virus Management -- Chapter 11. Application of Reed Beds in Wastewater Treatment: Scope for Transgenic Plants -- Chapter 12. Inspection of Crop Wild Relative (Cicer microphyllum) as Potential Genetic Resource in Transgenic Development -- Chapter 13. Genome Modification Approaches to Improve Performance, Quality and Stress Tolerance of Mediterranean Fruit Species -- Chapter 14. Key Challenges in Developing Products from Transgenic Plants -- Chapter 15. Enhanced Production of Therapeutic Proteins in Plants: Novel Expression Strategies -- Chapter 16. Transcriptional Engineering for Enhancing Valuable Metabolites in Photosynthetic Microalgae.
The green revolution led to the development of improved varieties of crops, especially cereals, and since then, classical or molecular breeding has resulted in the creation of economically valuable species. Thanks to recent developments in genetic engineering, it has become possible to introduce genes from different sources, such as bacteria, fungi, viruses, mice and humans, to plants. This technology has made the scientific community aware of the critical role of transgenics, not only as a means of producing stress tolerant crops but also as a platform for the production of therapeutics through molecular farming. This book discusses the commercial applications of plant transgenic technologies, including the use of transgenic cell culture approachesto improve the production of metabolites and high-value therapeutics as well as transgenic plants in pest management. It also explores generation of novel vectors, protein production using chloroplast engineering and the latest developments in this area, such as genome editing in plants. Featuring general discussions and research papers by leading international experts, it is a valuable resource for scientists, teachers, students and industrialists working in the field.
ISBN: 9789811396243$q(electronic bk.)
Standard No.: 10.1007/978-981-13-9624-3doiSubjects--Topical Terms:
193079
Plant genetic engineering.
LC Class. No.: SB123.57 / .A383 2019
Dewey Class. No.: 631.5233
Advances in plant transgenicsmethods and applications /
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Chapter 1. Plant Tissue Culture and DNA Delivery Methods -- Chapter 2. Cell Cultures and Hairy Roots as Platform for Production of High Value Metabolites: Current Approaches, Limitations and Future Prospects -- Chapter 3. Integrating Bioinformatics and Omics tools for systems analysis of abiotic stress tolerance in Oryza sativa (L.) -- Chapter 4. Green Biotechnology: A brief update on Plastid Genome Engineering -- Chapter 5. New Generation Transformation Vectors -- 6 Recent Developments in Generation of Marker Free Transgenic Plants -- Chapter 7. Applications of Genome Engineering/Editing Tools in Plants -- Chapter 8. High Throughput Analytical Techniques to Screen Plant Transgenics -- Chapter 9. Transgenic Technologies and their Potential Application in Horticultural Crop Improvement -- Chapter 10. Commercial Application of Transgenic Plants in Virus Management -- Chapter 11. Application of Reed Beds in Wastewater Treatment: Scope for Transgenic Plants -- Chapter 12. Inspection of Crop Wild Relative (Cicer microphyllum) as Potential Genetic Resource in Transgenic Development -- Chapter 13. Genome Modification Approaches to Improve Performance, Quality and Stress Tolerance of Mediterranean Fruit Species -- Chapter 14. Key Challenges in Developing Products from Transgenic Plants -- Chapter 15. Enhanced Production of Therapeutic Proteins in Plants: Novel Expression Strategies -- Chapter 16. Transcriptional Engineering for Enhancing Valuable Metabolites in Photosynthetic Microalgae.
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The green revolution led to the development of improved varieties of crops, especially cereals, and since then, classical or molecular breeding has resulted in the creation of economically valuable species. Thanks to recent developments in genetic engineering, it has become possible to introduce genes from different sources, such as bacteria, fungi, viruses, mice and humans, to plants. This technology has made the scientific community aware of the critical role of transgenics, not only as a means of producing stress tolerant crops but also as a platform for the production of therapeutics through molecular farming. This book discusses the commercial applications of plant transgenic technologies, including the use of transgenic cell culture approachesto improve the production of metabolites and high-value therapeutics as well as transgenic plants in pest management. It also explores generation of novel vectors, protein production using chloroplast engineering and the latest developments in this area, such as genome editing in plants. Featuring general discussions and research papers by leading international experts, it is a valuable resource for scientists, teachers, students and industrialists working in the field.
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