Literature DB >> 15532063

Pulsed electric field stimulates plant secondary metabolism in suspension cultures of Taxus chinensis.

Hong Ye1, Lin-Ling Huang, Shu-De Chen, Jian-Jiang Zhong.   

Abstract

The effects of pulsed electric field (PEF) on growth and secondary metabolite production by plant cell culture were investigated by using suspension cultures of Taxus chinensis as a model system. Cultured cells in different growth phases were exposed to a PEF (50 Hz, 10 V/m) for various periods of time. A significant increase in intracellular accumulation of taxuyunnanine C (Tc), a bioactive secondary metabolite, was observed by exposing the cells in the early exponential growth phase to a 30-min PEF. The Tc content (i.e., the specific production based on dry cell weight) was increased by 30% after exposure to PEF, without loss of biomass, compared with the control. The combination of PEF treatment and sucrose feeding proved useful for improving secondary metabolite formation. Production levels of reactive oxygen species, extracellular Tc, and phenolics were all increased, whereas cell capacitance was decreased with PEF treatment. The results show that PEF induced a defense response of plant cells and may have altered the cell/membrane's dielectric properties. PEF, an external stimulus or stress, is proposed as a promising new abiotic elicitor for stimulating secondary metabolite biosynthesis in plant cell cultures.

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Year:  2004        PMID: 15532063     DOI: 10.1002/bit.20266

Source DB:  PubMed          Journal:  Biotechnol Bioeng        ISSN: 0006-3592            Impact factor:   4.530


  7 in total

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4.  Electrical stimulation of the energy metabolism in yeast cells using a planar Ti-Au-electrode interface.

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6.  The Metabolite Content of the Post-Culture Medium of the Tree Fern Cyathea delgadii Sternb. Cell Suspension Cultured in the Presence of 2,4-D and BAP.

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7.  Nanosecond pulsed electrical fields enhance product recovery in plant cell fermentation.

Authors:  Fatemeh Rajabi; Christian Gusbeth; Wolfgang Frey; Jan Maisch; Peter Nick
Journal:  Protoplasma       Date:  2020-07-10       Impact factor: 3.356

  7 in total

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