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Plant Biotechnology and Medicinal Plants: Periwinkle, Milk Thistle and Foxglove

Autor Mohamed Ramadan Rady
en Limba Engleză Hardback – 5 aug 2019
Plant tissue culture and advanced biotechnologies have proven to be influential tools that complement conventional breeding and accelerate development of many medicinal plants.  Various approaches, such as pathway engineering, precursor feeding, transformation, elicitation with biotic and abiotic elicitors and scaling up in bioreactors, have been explored to improve the production of secondary metabolites from different medicinal plants. This book provides a comprehensive description of various studies, carried out on in vitro culture and hairy root cultures of Catharanthus roseus, Silybum marianum and Digitalis species which have been considered as alternative sources for the production of anti-tumour compounds, flavonolignans and cardenolides. Specific focus is on elicitation strategy for increasing production of bioactive compounds of C. roseus L., S. marianum and Digitalis species to overcome the constrains of conventional propagation. This book is valuable for researchers or students working on medicinal plants, phytochemistry, and plant tissue culture. It also serves as a reference for the pharmaceutical industry. 
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Specificații

ISBN-13: 9783030229283
ISBN-10: 3030229289
Pagini: 151
Ilustrații: XVII, 202 p. 13 illus., 11 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.49 kg
Ediția:1st ed. 2019
Editura: Springer International Publishing
Colecția Springer
Locul publicării:Cham, Switzerland

Cuprins

1. Terpenoid indole alkaloid production from in vitro culture of Catharanthus roseus through biotic, abiotic elicitation and precursors feeding.- 2. Biotic elicitation and TIA production from in vitro cultures of C.roseus.- 3. Precursor feeding and TIA production from in vitro cultures of C.roseus.- 4. Conclusion and future aspects.- 5. Terpenoid indole alkaloid production from in vitro culture of Silybum marianum through biotic, abiotic elicitation and precursors feeding.- 6. Biotic elicitation and TIA production from in vitro cultures of S. marianum.- 7. Precursor feeding and TIA production from in vitro cultures of S. marianum.- 8. Conclusion and future aspects.- 9. Terpenoid indole alkaloid production from in vitro culture of Digitalis species through biotic, abiotic elicitation and precursors feeding.- 10. Biotic elicitation and TIA production from in vitro cultures of Digitalis species.- 11. Precursor feeding and TIA production from in vitro cultures of Digitalis species.- 12. Conclusion and future aspects.

Textul de pe ultima copertă

Plant tissue culture and advanced biotechnologies have proven to be influential tools that complement conventional breeding and accelerate development of many medicinal plants.  Various approaches, such as pathway engineering, precursor feeding, transformation, elicitation with biotic and abiotic elicitors and scaling up in bioreactors, have been explored to improve the production of secondary metabolites from different medicinal plants. This book provides a comprehensive description of various studies, carried out on in vitro culture and hairy root cultures of Catharanthus roseus, Silybum marianum and Digitalis species which have been considered as alternative sources for the production of anti-tumour compounds, flavonolignans and cardenolides. Specific focus is on elicitation strategy for increasing production of bioactive compounds of C. roseus L., S. marianum and Digitalis species to overcome the constrains of conventional propagation. This book is valuable for researchers or students working on medicinal plants, phytochemistry, and plant tissue culture. It also serves as a reference for the pharmaceutical industry. 

Caracteristici

Comprehensive description of in vitro cultures and hairy root cultures of medicinal plants Special emphasis on elicitation strategy for increasing production of bioactive compounds of C. roseus L., S. marianum and Digitalis species Valuable resource for those who work on medicinal plants, phytochemistry and pharmaceutical industry