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Primary and secondary metabolism of plant cell cultures

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TLDR
From Metabolism and Osmotic Work to Totipotency and Morphogenesis: A Study of Limitations Versus Multiple Interactions.
Abstract
I From Metabolism and Osmotic Work to Totipotency and Morphogenesis: A Study of Limitations Versus Multiple Interactions.- II Primary Metabolism.- Photosynthetic Carbon Metabolism in Photoautotrophic Cell Suspension Cultures of Chenopodium rubrum L..- On the Photosynthetic System and Assimilate Metabolism of Daucus and Arachis Cell Cultures.- Regulation of Carbon and Nitrogen Assimilation Pathways in Tobacco Cell Suspension Cultures in Relation with Ultrastructural and Biochemical Development of the Photosynthetic Apparatus.- Application of Gas Analysis to Continuous Culture.- Carbohydrate Source, Biomass Productivity and Natural Product Yield in Cell Suspension Cultures.- Nitrogen Metabolism of Leaf and Microspore Callus of Betula pendula.- III Secondary Metabolism.- 4-Coumarate: CoA Ligase in Wild Carrot Cell Culture Clones Which Accumulate Different Amounts of Anthocyanin.- Induction of Anthocyanin Synthesis in Relation to Embryogenesis in a Carrot Suspension Culture - A Model System for the Study of Expression and Repression of Secondary Metabolism.- Metabolism of Quinolizidine Alkaloids in Plants and Cell Suspension Cultures: Induction and Degradation.- Production of Alkaloids by Ergot (Claviceps fusiformis Lov.) on Pennisetum typhoides (Burm.) Stapf and Hubb. in Vitro.- Compartmentation of Alkaloids in a Cell Suspension of Catharanthus roseus: A Reappraisal of the Role of pH Gradients.- Studies on Variability of Plant Tissue Cultures for Alkaloid Production in Catharanthus roseus and Papaver somniferum Callus Cultures.- Biosynthesis and Accumulation of Indole Alkaloids in Cell Suspension Cultures of Catharanthus roseus Cultivars.- Formation of Cardenolides in Cell and Organ Cultures of Digitalis lanata.- Metabolism of Caffeoyl Derivatives in Plant Cell Cultures.- Metabolic Relationships of Putrescine, GABA and Alkaloids in Cell and Root Cultures of Solanaceae.- Metabolism and Degradation of Nicotinic Acid in Plant Cell Cultures.- Plant Cell and Tissue Culture of Cinchona Species.- The Production of Pyrethrins by Chrysanthemum cinerariaefolium (Trev) Bocc..- Biosynthesis of Chorismate-Derived Quinones in Plant Cell Cultures.- The Role of Leucine in Terpenoid Metabolism: Incorporation of Leucine into Sesquiterpenoids and Phytosterols by Andrographis Tissue Cultures.- Accumulation of Antineoplastic Agents by Plant Tissue Cultures.- Induction of Enzymes of Phytoalexin Synthesis in Soybean Cells by Fungal Elicitor.- Protoplast Fusion of Secondary Metabolite-Producing Cells.- Conventional and New Approaches to Increase the Alkaloid Production of Plant Cell Cultures.- Multiple Shoot Cultures: A Viable Alternative in Vitro System for the Production of Known and New Biologically Active Plant Constituents.- IV Fermentation and Cryopreservation.- Large-Scale Production of Rosmarinic Acid from Plant Cell Cultures of Coleus blumei Benth..- Immobilised Plant Cell Culture Systems.- Biotransformation of Cardiac Glycosides by Digitalis Cell Cultures in Airlift Reactors.- Cryopreservation of Plant Cell Cultures.- V Herbicides.- Altered Amino Acid Biosynthesis in Amino Acid Analog and Herbicide-Resistant Cells.- Acetohydroxyacid Synthase Inhibitors as Herbicides.- A Glyphosate-Tolerant Plant Tissue Culture.- VI Plant Cell Culture - Future Perspectives.

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Plant cell cultures: Chemical factories of secondary metabolites

TL;DR: The production of the pungent food additive capsaicin, the natural colour anthocyanin and the natural flavour vanillin is described in detail.
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Polyamines and environmental challenges : recent development

TL;DR: All the data support the view that putrescine and derived polyamines (spermidine, spermine, long-chained polyamides) may have several functions during environmental challenges.
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Production of plant secondary metabolites: a historical perspective

TL;DR: Plant cell culture technologies were introduced at the end of the 1960s as a possible tool for both studying and producing plant secondary metabolites, and it is now possible to manipulate the pathways that lead to secondary plant compounds.
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Stress and defense responses in plant secondary metabolites production

TL;DR: Application of molecular biology tools and techniques are facilitating understanding the signaling processes and pathways involved in the SMs production at subcellular, cellular, organ and whole plant systems during in vivo and in vitro growth, with application in metabolic engineering of biosynthetic pathways intermediates.
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Plant cell factories in the post-genomic era: new ways to produce designer secondary metabolites.

TL;DR: How the spectacular advances in plant genomics and metabolite profiling offer unprecedented possibilities to explore the extraordinary complexity of the plant biochemical capacity is discussed.
References
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Journal ArticleDOI

A revised medium for rapid growth and bio assays with tobacco tissue cultures

TL;DR: In vivo redox biosensing resolves the spatiotemporal dynamics of compartmental responses to local ROS generation and provide a basis for understanding how compartment-specific redox dynamics may operate in retrograde signaling and stress 67 acclimation in plants.
Journal ArticleDOI

Nutrient requirements of suspension cultures of soybean root cells.

TL;DR: The nutrient requirements of suspension cultures from soybean root have been investigated, and a simple medium consisting of mineral salts, sucrose, vitamins and 2,4-dichlorophenoxyacetic acid (2, 4- d) has been designed.
Journal ArticleDOI

PHYTOALEXINS AND THEIR ELICITORS-A Defense Against Microbial Infection in Plants

TL;DR: Evidence is presented which supports the view that accumulation of phytoalexins at the site of attempted infection in plants is supported and a hypothesis is presented that suggests that all of the abiotic and some of the biotic elicitors stimulate phy toalexin accumulation by causing the release of an endogenous elicitor from the cell walls of plants.
Journal ArticleDOI

Analysis of Polyamines in Higher Plants by High Performance Liquid Chromatography

TL;DR: With the HPLC method, polyamine titers have been reproducibly estimated for various organs of amaranth, Lemna, oat, pea, Pharbitis, and potato and the analyses correlate well with results of thin layer chromatography determinations.