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Initiation, long-term cryopreservation, and recovery of Abies alba Mill. embryogenic cell lines
Authors:Jana Krajňáková  Alberto Bertolini  Du?an Gömöry  Angelo Vianello  Hely Häggman
Institution:1. Faculty of Forestry and Wood Technology, Mendel University, Zemědělská 3, 613 00, Brno, Czech Republic
2. Department of Agricultural and Environmental Science, University of Udine, via delle Scienze 91, 33100, Udine, Italy
3. Faculty of Forestry, Technical University Zvolen, T. G. Masaryka 24, Zvolen, SK-960 53, Slovakia
4. Department of Biology, University of Oulu, P.O. Box 3000, FIN-90014, Oulu, Finland
Abstract:Somatic embryogenesis of Abies alba (Mill.) has significant potential to become an effective method for vegetative propagation of this species. To induce somatic embryogenesis in A. alba, the influence of the mother tree, sampling dates, and cold treatment storage of cones were examined. The initiation frequencies ranged from 1.7% to 16.6%. The sampling date and cone storage, but not the mother tree, had a significant effect on the initiation of embryogenic cultures. Storage of embryogenic cell lines was tested through cryopreservation for 6 yr. Four out of 12 cryostored embryogenic cell lines recovered, and the regeneration of cotyledonary embryos was obtained with two cell lines. The ability of embryogenic cell masses to produce somatic embryos and the mean number of cotyledonary embryos were higher when the maturation protocol was based on embryogenic suspensions dispersed on filter paper. The properly developed germinants were obtained only from maturation media where 32 μM abscisic acid was used, being 16.2% when polyethylene glycol (PEG) was not present and 1.8% when supplemented with 10% (w/v) PEG, respectively. The present study provides evidence that it is possible to cryopreserve A. alba embryogenic cultures while maintaining their maturing ability for the lengthy period (6 yr) needed for progeny testing of field-grown trees. Therefore, our findings are important for further studies and advanced breeding work of the species; however, the conversion of germinants into ex vitro conditions still remains a significant challenge.
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