Download e-book for kindle: Advances In Biochemical Engineering Biotechnology Plant by J.-J. Zhong

By J.-J. Zhong

ISBN-10: 3642075355

ISBN-13: 9783642075353

The new achievements in engineering reports on plant phone cultures are reviewed, incorporated are the gasoline focus results and bioprocess integration for the improved productiveness of plant secondary metabolites. The metabolic engineering of plant secondary metabolite pathways and recombinant protein creation from genetically changed plant cells are brought. Large-scale plant micropropagation through somatic embryogenesis and furry roots is mentioned for effective propagation of desease-free, genetically uniform and big quantities of vegetation in vitro in gigantic quantities. Characterization and alertness of furry plant roots endowed with photosynthetic features can also be lined during this designated quantity.

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Extra info for Advances In Biochemical Engineering Biotechnology Plant Cells

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3 4 Conclusions . . . . . . . . . . . . . . . . 55 References . . . . . . . . . . . . . . . . . . 59 1 Introduction Plants provide a wide variety of biochemicals useful to humanity. Their uses include medicinal compounds, flavors, fragrances and agricultural chemicals. A number of investigators have studied the use of plant cells in culture, rather than whole plants, as sources of some of the more valuable organic compounds. Before such processes can become a viable manufacturing option, a great deal more must be learned about the optimum conditions for growth and productivity of cells in culture.

Thousands of patients in China and Myanmar (formerly Burma) have been successfully treated but, as of 1990, artemisinin is unavailable elsewhere. Relatively low toxicity has been observed, along with substantial effectiveness. Unfortunately, the relapse rate is high. Nevertheless, use of artemisinin or its derivatives in conjunction with other treatments is considered promising [67]. The small concentrations of artemisinin in plant material (and the possibility of an embargo of Chinese plant material) has led several groups of researchers to investigate use of plant cell cultures as a source of artemisinin [26, 68–70].

55 References . . . . . . . . . . . . . . . . . . 59 1 Introduction Plants provide a wide variety of biochemicals useful to humanity. Their uses include medicinal compounds, flavors, fragrances and agricultural chemicals. A number of investigators have studied the use of plant cells in culture, rather than whole plants, as sources of some of the more valuable organic compounds. Before such processes can become a viable manufacturing option, a great deal more must be learned about the optimum conditions for growth and productivity of cells in culture.

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Advances In Biochemical Engineering Biotechnology Plant Cells by J.-J. Zhong


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