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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Planta 170 (1987), S. 300-307 
    ISSN: 1432-2048
    Keywords: Chloroembryophyte ; Chloroplast (differential development) ; Citrus ; Embryo (chloroplasts) ; Seed germination ; Thylakoid (polypeptides)
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract Clementine (Citrus nobilisxCitrus aurantium amara pumila) is a chloroembryophyte with green quiescent embryos and hypogeal germination. The cotyledonal chloroplasts have been studied during germination in the dark and under two different irradiances 120 and 240 μmol·m-2·s-1 throughout a period of three weeks. The plastids of the outer adaxial and inner regions develop differently. In the light, the former differentiate a photosynthetically active thylakoid system with an ultrastructural organization and a polypeptide composition resembling that of leaf chloroplasts. The “inner” chloroplasts maintain an organization reminiscent of chloroplasts of the quiescent embryo and never get beyond the photosynthesis/respiration compensation point; their differentiation pattern appears essentially the same under the two different irradiances. These observations and the germination in the dark indicate that the above differentiation is not strictly photodependent. The greening ability of the cotyledons provides, on occasion, an additional photosynthetic supply to this plant.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1615-6102
    Keywords: Aesculus hippocastanum ; Callus cultures ; Callus ultrastructure ; Embryogenic callus ; Non-embryogenic callus
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary The cell ultrastructure in three types of callus obtained from leaf explants ofAesculus hippocastanum L. has been studied. Remarkable differences have been shown between the cells of the forerunner E1 callus and those of the callus arising from it, according to the culture conditions. The peculiar characteristics of E1 are the scarcity of intercellular spaces and the occurrence of autophagic vacuoles in the cells. An embryogenic friable callus (E2) is formed in time when E1 is maintained on solid culture medium. The E2 cells show cytological features typical of a higher metabolic level and contain starch. Diffused middle lamella digestion leads to the detachment of small embryogenic cell aggregates consisting of vacuolated parenchymatous-like cells and small meristematic cells which may be regarded as embryoids initials. Shaking E1 in the same liquid medium and subsequent culture on solid medium lead to the differentiation of a non-embryogenic callus (NE), whose cells are very large and highly vacuolated, devoid of starch and with organelle-rich cytoplasm. The NE callus shows a high degree of growth, but does not attain embryogenic competence in time.
    Type of Medium: Electronic Resource
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