Phytochemicals in Plant Cell Cultures


Book Description

Cell Culture and Somatic Cell Genetics of Plants, Volume 5: Phytochemicals in Plant Cell Cultures provides comprehensive coverage of the wide variety of laboratory procedures used in plant cell culture, fundamental aspects of cell growth and nutrition, and plant regeneration and variability. This book consists of five main topics—phenylpropanoids, naphthoquinones, and anthraquinones; mevalonates; alkaloids; glucosinolates, polyacetylenes, and lipids; and biologically active compounds. This publication specifically discusses the coumarins in crown gall tumors, natural occurrence of bufadienolides, and accumulation of protoberberine alkaloids. The flavor production in tissue cultures of allium species and callus cultures derived from carrot root explants is also reviewed. This volume is valuable to experienced researchers and those newly entering the field of plant cell and tissue culture.




Cell Culture in Phytochemistry


Book Description

Cell Culture and Somatic Cell Genetics of Plants, Volume 4: Cell Culture in Phytochemistry reviews phytochemistry by employing plant cell cultures. This book discusses the realization of industrial plant cell culture for the production of phytochemicals and molecular biological approach to understand the regulation of product synthesis. The topics covered include the accumulation of secondary metabolites, phenolic production in cultured tissues, and stability of clones and subclones. The somatic hybridization by protoplast fusion, various techniques for continuous culture of plant cells, and methodology of enzyme-linked immunosorbent assays (ELISA) are also deliberated. This volume provides intensive information on all aspects of plant cell and tissue culture and is recommended to both experienced researchers and to those newly entering the field.







Cell Culture and Somatic Cell Genetics of Plants


Book Description

Coumarins and furanocoumarins; flavonoids; anthocyanins; proanthocy; anthocyanidins and catechins; tannins, lignans, and lignins; naphthoquinoces; anthraquinones; monoterpenes and sesquiterpenes; diterpenes; bufadienolides; cardenolides; saponins (ginseng saponins); phenylalkylamines (Ephedra Alkaloids); pyrrolidines, piperidines, and pyridines; tropanes; quinolizidines and pyrrolizidines; isoquinolines; isoquinolines (Papaver alkalois); quinoline alkaloids of cinchona; B-carbolines and indole alkylamines; monoterpene indole alkaloids from apocynaceae other than catharanthus roseus; monoterpene indole alkaloids (catharanthus alkaloids); purines; acridones (ruta alkaloids); terpenoid and steroid alkaloids; betalains; glucosinolates; allium compounds; polyacetylenes; lipids; insecticidal phytochemicals.







Cell Culture and Somatic Cell Genetics of Plants


Book Description

V. 1. Laboratory procedures and their applications.--v. 2. Cell growth, nutrition, cytodifferentiation, and cryopreservation.--v. 3. Plant regeneration and genetic variability.--v. 4. Cell culture in phytochemistry.--v. 5. Phytoche micals in plant cell cultures.--v. 6. Molecular biology of plant nuclear genes. --v. 7A. The molecular biology of plastids.--v. 7B. The photosynthetic apparatus: molecular biology and operation.--v. 8. Scale-up and automation in plant propagation.




Cell Culture and Somatic Cell Genetics of Plants


Book Description

V. 1. Laboratory procedures and their applications.--v. 2. Cell growth, nutrition, cytodifferentiation, and cryopreservation.--v. 3. Plant regeneration and genetic variability.--v. 4. Cell culture in phytochemistry.--v. 5. Phytoche micals in plant cell cultures.--v. 6. Molecular biology of plant nuclear genes. --v. 7A. The molecular biology of plastids.--v. 7B. The photosynthetic apparatus: molecular biology and operation.--v. 8. Scale-up and automation in plant propagation.




Plant Tissue Culture: An Introductory Text


Book Description

Plant tissue culture (PTC) is basic to all plant biotechnologies and is an exciting area of basic and applied sciences with considerable scope for further research. PTC is also the best approach to demonstrate the totipotency of plant cells, and to exploit it for numerous practical applications. It offers technologies for crop improvement (Haploid and Triploid production, In Vitro Fertilization, Hybrid Embryo Rescue, Variant Selection), clonal propagation (Micropropagation), virus elimination (Shoot Tip Culture), germplasm conservation, production of industrial phytochemicals, and regeneration of plants from genetically manipulated cells by recombinant DNA technology (Genetic Engineering) or cell fusion (Somatic Hybridization and Cybridization). Considerable work is being done to understand the physiology and genetics of in vitro embryogenesis and organogenesis using model systems, especially Arabidopsis and carrot, which is likely to enhance the efficiency of in vitro regeneration protocols. All these aspects are covered extensively in the present book. Since the first book on Plant Tissue Culture by Prof. P.R. White in 1943, several volumes describing different aspects of PTC have been published. Most of these are compilation of invited articles by different experts or proceedings of conferences. More recently, a number of books describing the Methods and Protocols for one or more techniques of PTC have been published which should serve as useful laboratory manuals. The impetus for writing this book was to make available a complete and up-to-date text covering all basic and applied aspects of PTC for the students and early-career researchers of plant sciences and plant / agricultural biotechnology. The book comprises of nineteen chapters profusely illustrated with self-explanatory illustrations. Most of the chapters include well-tested protocols and relevant media compositions that should be helpful in conducting laboratory experiments. For those interested in further details, Suggested Further Reading is given at the end of each chapter, and a Subject and Plant Index is provided at the end of the book.




Introduction to Plant Tissue Culture


Book Description

Introduction and techniques; Introductory history; Laboratory organisation; Media; Aseptic manipulation; Basic aspects; Cell culture; Cellular totipotency; Somatic embryogenesis; Applications to plant breeding; Haploid prodution; Triploid production; In vitro pollination and fertilization; Zygotic embryo culture; Somatic hybridisation and cybridisation; Genetic transformation; Somaclonal and gametoclonal variant selection; Application to horticulture and forestry; Production of disease-free plants; clonal propagation; General applications; Industrial applications: secondary metabolite production; Germplasm conservation.