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  • 1
    ISSN: 1432-203X
    Keywords: Key words Competence ; Dedifferentiation ; African violet ; Saintpaulia ionantha
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract In leaf discs of Saintpaulia ionantha×confusa hybrid (cv. Virginia) cultured on shoot-inducing medium, periclinal divisions were initiated in epidermal cells 3–5 days after explant isolation. This timing coincided with the time for competence acquisition determined in tissue-transfer experiments. Some of the daughter cells from periclinal divisions formed the target cells which divided both anticlinally and periclinally to form cell division centers (meristemoids), precursors of adventitious shoots. The target cells were not morphologically distinct from other epidermal cells at the light microscope level. It is suggested that the periclinal divisions in epidermal cells represent the dedifferentiation phase during which target (competent) cells are formed. Once the cells have acquired the ability to divide periclinally, both dedifferentiation and shoot induction occur in the presence of exogenous plant hormones.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-203X
    Keywords: Key words Competence ; Shoot regeneration ; African violet ; Saintpaulia ionantha
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract Leaf discs from Saintpaulia ionantha×confusa hybrids (African violet) were transferred between basal medium (BM) containing no hormones and shoot-inducing medium (SIM) containing 2.0 mg l–1 indole acetic acid and 0.08 mg l–1 6-benzylaminopurine to determine whether there is a ``window'' of competence for shoot regeneration. Leaf discs precultured on BM prior to transfer to SIM formed buds 3 days earlier than the controls (leaf discs not precultured) regardless of whether the discs were placed upside down or right side up on the medium. This suggests that cultured leaf cells were not competent for shoot induction during the first 3 days of culture. Leaf discs cultured right side up (abaxial surface to the medium) did not form buds on BM alone, unlike discs cultured upside down. Leaf disc survival was affected by a delay in hormonal exposure, but surviving leaf discs produced as many shoots as control leaf discs. This suggests that in the absence of exogenous plant hormones, cellular competence to regenerate shoots is not lost in excised leaf discs of African violet.
    Type of Medium: Electronic Resource
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