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In vitro morphogenesis of sunflower (Helianthus annuus) hypocotyl protoplasts: the effects of protoplast density, haemoglobin and spermidine

Authors :
Elena Rakosy-Tican
Simona vesa
Adriana Aurori
Krisztina-Maria Kovacs
Source :
Plant Cell, Tissue and Organ Culture. 90:55-62
Publication Year :
2007
Publisher :
Springer Science and Business Media LLC, 2007.

Abstract

Sunflower, as one of the most important oil-producing crops, represents an important target for genetic improvement through gene transfer or somatic hybridization. Unfortunately, sunflower is recognized as recalcitrant to in vitro culture. The aim of our paper was to improve sunflower protoplast regeneration. Three cultivars (Romanian hybrids) and one inbred line were used for protoplast isolation from etiolated hypocotyls. Isolated protoplasts were embedded in alginate disks and cultured in two plating densities, using two culture regimes as indicated by previous authors. Plating efficiency, callus development and plant regeneration were evaluated as well as old callus histology. In cv. ‘Select’, the effects of 1:50 haemoglobin and 1 mM spermidine were assayed on asymmetric division and/or plating efficiency. Plant regeneration from hypocotyl protoplasts was achieved for two cvs., ‘Florom 328’ and ‘Turbo’, with the former proving once more its totipotency. The best culture regime proved to be as recommended by Krasnyanski and Menczel (1993), but the best density in the culture medium was the highest ever tested, 8 × 105 pp ml−1. Moreover, the histology of old green compact protoplast-derived callus revealed a very well organized structure suggesting senescence. In the non-responsive cv. ‘Select’, haemoglobin was found to stimulate protoplast asymmetric division and the development of heart-shaped embryo-like structures, while spermidine stimulated overall protoplast plating efficiency.

Details

ISSN :
15735044 and 01676857
Volume :
90
Database :
OpenAIRE
Journal :
Plant Cell, Tissue and Organ Culture
Accession number :
edsair.doi...........f2337e827f687c5dda6c9e0c28f63f7a
Full Text :
https://doi.org/10.1007/s11240-007-9251-2