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  • 1
    ISSN: 1432-2048
    Keywords: Action spectrum ; Dormancy (seeds) ; Germination (seeds) ; Lactuca ; Phytochrome
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract Light of wavelengths in the range 400–500 nm induces germination of seeds of Lactuca sativa L. (cv. Noran and May Queen) when made light requiring by high temperature (thermodormancy) or prolonged exposure to far red light (far red dormancy). TD seeds proved more sensitive to blue light than FRD seeds by several orders of magnitude. Blue induced germination could be reversed by far red. Fluence response curves for this reversion are less steep for TD than for FRD seeds. The degree of germination of TD seeds after moderate doses of blue light is decreased by dark storage at 22° C or by exposure to far red and this is accompanied by a marked change in the shape of the fluence response curves. In these respects, germination induction by blue resembles that by red light. Continuous exposure to blue light inhibits germination of TD seeds but hardly that of FRD seeds. An action spectrum is given for blue induced germination of TD seeds.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-2048
    Keywords: Action spectra ; Dormancy (seeds) ; Germination (seeds) ; Lactuca ; Phytochrome
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract Fluence response curves for red light-induced germination of thermodormant (TD) seeds of Lactuca sativa L. show two regions that differ in their light sensitivity. In the region of high sensitivity, the germination responses differ between seed batches and can be altered by dark storage or far red irradiation. Induction of germination in far red dormant (FRD) seeds requires far higher fluences. Action spectra for induction to 60% germination were determined for these various response types. Spectra for the regions of low sensitivity response are similar for TD and FRD seeds. In comparison, the action spectrum for the highly sensitive response in TD seeds is significantly shifted to longer wavelengths. Analogous differences exist in the action spectra for far red reversal of the red induced germination responses. Germination induction in the low sensitivity region shows repeated red-far red reversibility. Far red reversal of red induction in the high sensitivity region does not saturate even at the highest far red fluences available and requires increased red fluences for subsequent reinduction. A model quantitatively accounting for these observations is presented. It is pointed out that action spectra of processes involving photoreversible pigments with partly overlapping absorption spectra in general are not identical with the absorption spectra of the partners. They should depend upon the degree of phototransformation required to elicit a given physiological response. In the case of induction of lettuce seed germination the observed action spectra can be interpreted as reflecting different requirements for P fr of the various response types. Our results do not necessitate the assumption of spectroscopically different forms of phytochrome in these seeds.
    Type of Medium: Electronic Resource
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