Cell suspension cultures of Taxus canadensis and Taxus cuspidata rapidly produced paclitaxel (Taxol) and other taxoids in response to elicitation with methyl jasmonate. By optimizing the concentration of the elicitor, and the timing of elicitation, we have achieved the most rapid accumulation of pac
Metabolic responses of Taxus media transformed cell cultures to the addition of methyl jasmonate
β Scribed by Oscar Exposito; Katarzyna Syklowska-Baranek; Elisabeth Moyano; Miriam Onrubia; Mercedes Bonfill; Javier Palazon; Rosa M. Cusido
- Publisher
- American Institute of Chemical Engineers
- Year
- 2010
- Tongue
- English
- Weight
- 347 KB
- Volume
- 26
- Category
- Article
- ISSN
- 8756-7938
- DOI
- 10.1002/btpr.424
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β¦ Synopsis
Abstract
Dedifferentiated Taxus media cell cultures presenting the same genetic characteristics as the parent culture were established from transformed roots. Two transformed cell lines were studied: Rol C, carrying the TβDNA of A. rhizogenes 9,402 and TXS, carrying both the TβDNA of A. rhizogenes and the txs transgene of T. baccata under the control of the 35S CaMV promoter. In the second part of a previously optimized twoβstage system, the transformed cell lines were cultured in a production medium supplemented with the elicitor methyl jasmonate. Taxane production in the transformed cultures was compared with an untransformed T. media cell line cultured in the same conditions. The highest taxane production was observed in the TXS cell line when cultured in the optimized production medium with methyl jasmonate, being 265% greater than in the untransformed control and 170% greater than in the Rol C cell line. However, txs expression and the activity of the enzyme taxadiene synthase in the TXS cells were lower than in the line carrying only the rol genes (Rol C). It is also noteworthy that the taxane production as well as the txs gene expression and TXS activity in all the cell lines, both transformed and untransformed, were clearly dependent on the elicitor action. Β© 2010 American Institute of Chemical Engineers Biotechnol. Prog., 2010
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## Abstract Recently novel synthetic jasmonate derivatives were shown to have very powerful stimulating effects on the biosynthesis of taxuyunnanine C (Tc) by __Taxus chinensis__ cells (Biotech Bioeng, 86:595; ibid. 86: 809, 2004). To provide an insight into the elicitation mechanism of the newly s