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cyclamen hederifolium/sucrose

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Cryopreservation of embryogenic suspension cultures of Cyclamen persicum mill.

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We have developed a simple protocol for the cryopreservation of embryogenic suspension cultures of Cyclamen persicum. Embryogenic suspension cultures in the linear growth phase 7-10 days after subculture were used for cryopreservation. Of the different cryoprotectants tested during a 2-day

[Cryopreservation of Cyclamen persicum Mill. Callus].

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In this paper we studied cryopreservation of Cyclamen persicum Mill. callus to avoid variations produced by sub-culture. The callus in the logarithmic phase after sub-culture were used for experiments. Firstly, the callus were pre-cultured in culture-medium containing 4%, 6% or 8% sucrose for
In the horticulturally important ornamental species Cyclamen persicum Mill., somatic embryogenesis is an efficient vegetative propagation method and the development of artificial seeds is an ultimate aim. This study aims at a systematic comparison of the proteomes of zygotic embryos, somatic embryos

From callus to embryo: a proteomic view on the development and maturation of somatic embryos in Cyclamen persicum.

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In this study, the proteome structures following the pathway in somatic embryogenesis of Cyclamen persicum were analysed via high-resolution 2D-SDS-PAGE with two objectives: (1) to identify the significant physiological processes during somatic embryogenesis in Cyclamen and (2) to improve the

Metabolite profiling of somatic embryos of Cyclamen persicum in comparison to zygotic embryos, endosperm, and testa.

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Somatic embryogenesis has been shown to be an efficient in vitro plant regeneration system for many crops such as the important ornamental plant Cyclamen persicum, for which this regeneration pathway of somatic embryogenesis is of interest for the vegetative propagation of parental lines as well as

Planteose is a short-term storage carbohydrate in Actinidia leaves

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The polyol myo-inositol constitutes 10-20% of soluble carbohydrates in mature leaves of Actinidia deliciosa (A.Chev.) C.F. Liang et A.R. Ferguson var. deliciosa 'Hayward' and A. arguta (Sieb. et Zucc.) Planch. ex Miq. var. arguta. In contrast with other non-structural carbohydrates, myo-inositol
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