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- W2080593897 abstract "can be vegetatively propagated and cultivated under sterile conditions on agar medium for many years. The protonemata of Ceratodon shows a phytochrome-regulated phototropic response. Red light induces the growth of the filament toward the light source and, following far red light, abolishes the lightoriented growth. The filaments do not detect the light direction any longer (Figure 1). The capability of a plant cell, like the tip cell of the protonemata, to detect the light direction is based on a physical light gradient in the cellular system to estimate light distribution differences. The tubular cell functions like a lens system, which produces more or less complicated intracellular light gradients that can be determined by the cell. To use the gradient for the orientation of growth, the localization of the responsible photoreceptor system has to be strictly oriented in the cell. This can be demonstrated by applying polarized light, which has distinct vibration planes. The degree of the resulting reaction is an indication for the intracellular orientation of the pigment molecules. In the moss protonemata tip cells, the phytochrome molecules seem to be membrane-bound and dichroic oriented (Figure 2). The performed experiments are a contribution to the important but still unsolved question how signals are processed and transduced in plants or plant cells. The relatively simply organized moss tip cell might be a useful model system for elucidating signal processing in plant cells." @default.
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- W2080593897 date "1984-05-01" @default.
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- W2080593897 title "Transmission of UV-Radiation Through Human Epidermal Layers Influences the Minimal Erythema Dose" @default.
- W2080593897 doi "https://doi.org/10.2307/1309393" @default.
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