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Micropropagation via somatic embryogenesis of rare and endangered species, Acanthopanax seoulenses Nakaiopen access

Authors
Kang, H.D.Moon, H.K.Lee, S.K.
Issue Date
1-Oct-2014
Publisher
Taylor and Francis Ltd.
Keywords
conversion; effective mass-propagation; germination; soil acclimatization; somatic embryo induction
Citation
Forest Science and Technology, v.10, no.4, pp 190 - 196
Pages
7
Indexed
SCOPUS
KCI
Journal Title
Forest Science and Technology
Volume
10
Number
4
Start Page
190
End Page
196
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/18822
DOI
10.1080/21580103.2014.913536
ISSN
2158-0103
2158-0715
Abstract
A somatic embryogenesis and plant regeneration study was conducted with a rare and endangered species, Acanthopanax seoulenses, and various factors affecting somatic embryo induction were evaluated. The frequency of embryogenic callus induction was slightly better on wounded seeds compared with non-wounded ones. The optimum medium to induce somatic embryos (SEs) from embryogenic cells was MS medium supplemented with 3% sucrose and 0.1–0.2 mg/l abscisic acid (ABA), or MS medium with 3% sucrose and 0.1 mg/l ABA+0.02% activated charcoal. Gibberellic acid resulted in a positive effect on SE germination, but there were no differences in the range of 0.1 to 1.0 mg/l. SE germination and plant conversion rate were different in the two gelling agents: agar-gelled medium was slightly better than gelite-gelled medium, and the highest plant conversion, 78±18.2%, was achieved in agar-gelled medium. Regenerated plantlets were successfully acclimatized in artificial soil mixture, and more than 98% of the plants survived in vermiculite or an equal volume mixture of vermiculite and peat moss. Results suggest that the rare and endangered species is able to propagate effectively via the somatic embryogenesis system. © 2014, © 2014 Korean Forest Society.
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