Alkaloid N-oxides as transport and vacuolar storage compounds of pyrrolizidine alkaloids in Senecio vulgaris L
- 1 November 1988
- journal article
- research article
- Published by Springer Nature in Planta
- Vol. 176 (1) , 83-90
- https://doi.org/10.1007/bf00392483
Abstract
Cell-suspension cultures of pyrrolizidinealkaloid-producing species selectively take up and accumulate senecionine (sen) and its N-oxide (sen-Nox). Cultures established from non-alkaloid-producing species are unable to accumulate the alkaloids. The uptake and accumulation of 14C-labelled alkaloids was studied using a Senecio vulgaris cell-suspension culture as well as protoplasts and vacuoles derived from it. The alkaloid uptake exhibits all characteristics of a carrier-mediated transport. The uptake of sen-Nox follows a multiphasic saturation kinetics. The Km-values for sen Nox of 53 μM and 310 μM are evaluated. Senecionine competitively inhibits sen-Nox uptake, indicating that the tertiary alkaloid and its N-oxide share the same membrane carrier. The N-oxide of sen shows a pH optimum below 5.5, whereas sen is taken up over a range from pH 4 to 8. Activation energies of 90 and 53 kJ·mol-1 are calculated for sen-Nox and sen transport, respectively. At concentrations of 10 to 100 μM, sen-Nox is rapidly taken up by cells and protoplasts; within 2 h >90% of total N-oxide is within the cells. By contrast the uptake of sen is less efficient. Vacuoles isolated from protoplasts preloaded with sen-Nox totally retained the alkaloid N-oxide, whereas sen is rapidly lost during the procedure of vacuole preparation. N-oxidation converts the weak lipophilic tertiary base into a charged polar molecule which is excellently adapted to serve as the cellular transport and storage form of pyrrolizidine alkaloids.Keywords
This publication has 35 references indexed in Scilit:
- Tonoplast energization: Two H+ pumps, one membranePhysiologia Plantarum, 1987
- Polyamine Uptake, Kinetics, and Competition among Polyamines and between Polyamines and Inorganic CationsPlant Physiology, 1986
- Insects pharmacophagously utilizing defensive plant chemicals (Pyrrolizidine alkaloids)The Science of Nature, 1986
- Putrescine Uptake in Saintpaulia PetalsPlant Physiology, 1985
- Effects of Vanadate on the Plasma Membrane ATPase of Red Beet and CornPlant Physiology, 1984
- Effect of Vanadate, Molybdate, and Azide on Membrane-Associated ATPase and Soluble Phosphatase Activities of Corn RootsPlant Physiology, 1982
- [14]Tabernanthine, by cell suspension cultures of Catharanthus roseus (L.) G. Don and Acer pseudoplatanus L.Plant Science Letters, 1981
- Amino Acid Transport in Suspension-cultured Plant CellsPlant Physiology, 1980
- Role of Calcium in Serine Transport into Tobacco CellsPlant Physiology, 1978
- The Use of Fluorescein Diacetate and Phenosafranine for Determining Viability of Cultured Plant CellsStain Technology, 1972