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090 _aB-8400
245 1 0 _aApplication of bioreactor systems for large scale production of horticultural and medicinal plants
490 0 _vPlant Cell, Tissue and Organ Culture, 81, p.287-300, 2005
520 3 _aAutomation of micropropagation via organogenesis or somatic embryogenesis in a bioreactor has been advanced as a possible way of reducing costs. Micropropagation by conventional techniques is typically a labour-intensive means of clonal propagation. The paper describes lower cost and less labour-intensive clonal propagation through the use of modified air-lift, bubble column, bioreactors (a balloon-type bubble bioreactor), together with temporary immersion systems for the propagation of shoots, bud-clusters and somatic embryos. Propagation of Anoectochilus, apple, Chrysanthemum, garlic, ginseng, grape, Lilium, Phalaenopsis and potato is described. In this chapter, features of bioreactors and ioreactor process design specifically for automated mass propagation of several plant crops are described, and recent research aimed at maximizing automation of the bioreactor production process is highlighted.
650 1 4 _aBTBB
650 1 4 _aBALLOON TYPE BUBBLE BIOREACTOR
650 1 4 _aDO-DISSOLVED OXYGEN
650 1 4 _aIEDC-INDUCED EMBRYOGENIC DETERMINED CELLS
650 1 4 _aPLB-PROTOCORM-LIKE BODY
650 1 4 _aPPF-PHOTOSYNTHETIC PHOTON FLUX
650 1 4 _aSTR-STIRRED TANK REACTOR
700 1 2 _aPaek, K.Y.
700 1 2 _aChakrabarty, D.
700 1 2 _aHahn, E.J.
856 4 0 _uhttps://drive.google.com/file/d/1IPT00qgQpDBfmKZ45PMllAde9MYdlIyr/view?usp=drivesdk
_zPara ver el documento ingresa a Google con tu cuenta: @cicy.edu.mx
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