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  • 1
    ISSN: 1432-2048
    Keywords: Adiantum ; Light, polarized ; Phytochrome in polarotropism ; Polarotropism ; Protonema (fern) ; Pteridophyta
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary Perception of polarized light inducing phytochrome-mediated polarotropism in protonemata of the fern Adiantum capillus-veneris L. was analyzed using brief microbeam irradiation with polarized red (R) or far-red light (FR). The polarotropic response inducible by irradiation of the subapical 10–30-μm part with polarized R vibrating parallel to the cell axis was nullified by subsequently giving R at the apical 0–2.5-μm region. This inhibitory effect of R showed an action dichroism, that is, polarized R vibrating normal to the cell axis was effective but the parallel-vibrating R was not. On the other hand, FR irradiation of the extreme tip after irradiation of the whole cell with depolarized R effectively induced a tropic response. This FR effect also showed action dichroism, with parallel-vibrating polarized FR being more effective than FR vibrating normal to the cell axis. When the apical-dome region and the adjacent subapical 10–20-μm region were sequentially irradiated with polarized R vibrating obliquely in different directions, polarotropism took place depending on the vibrating direction of the light given to the apical-dome region. Obliquely vibrating polarized FR given to the apical dome after irradiation of the whole cell with depolarized R also induced polarotropism. Thus, the difference in amount (or percent) of the far-redabsorbing form of phytochrome (Pfr) between the extreme tip and the subapical region appears to be crucial in regulating the direction of apical growth; the difference in Pfr level between the two sides of the protonemal apex may occur mainly at the apical dome. Furthermore, the transition moments of the red-absorbing form of phytochrome (Pr) and Pfr seem to be aligned parallel and normal, respectively, to the cell surface at the periphery of the apical hemisphere.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Protoplasma 140 (1987), S. 190-192 
    ISSN: 1615-6102
    Keywords: ATP ; Microfilaments ; Microtubules ; Motility ; Myxomycete ; Physarum polycephalum
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary Permeabilized flagellates of the myxomycetePhysarum polycephalum were treated with ATP, and changes in the cytoskeletal organization were examined by fluorescence microscopy. The backbone structure in permeabilized flagellates consisted of a coaligned bundle of microfilaments and microtubules. Treatment of such permeabilized flagellates with ATP caused relative movement between the microtubules and the bundle of microfilaments, so that the microtubules and the microfilaments apparently slid apart. Similar movement was observed using the isolated backbone structures.
    Type of Medium: Electronic Resource
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