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Publikační činnost
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Record type:
stať ve sborníku (D)
Home Department:
Katedra fyziky (31300)
Title:
Light induced regulation of excitation energy transfer during the development of barley photosynthetic apparatus under different irradiances
Citace
Špunda, V., Navrátil, M., Čajánek, M. a Kalina, J. Light induced regulation of excitation energy transfer during the development of barley photosynthetic apparatus under different irradiances.
In:
Acta Facultatis Rerum Naturalium Universitas Ostraviensis: Acta Facultatis Rerum Naturalium Universitas Ostraviensis Ostrava.
Ostrava: Ostravská univerzita v Ostravě, 2001. Ostravská univerzita v Ostravě, 2001. s. 69-87. ISBN 80-7042-810-4.
Subtitle
Publication year:
2001
Obor:
Biofyzika
Number of pages:
Page from:
69
Page to:
87
Form of publication:
ISBN code:
80-7042-810-4
ISSN code:
Proceedings title:
Acta Facultatis Rerum Naturalium Universitas Ostraviensis
Proceedings:
Publisher name:
Ostravská univerzita v Ostravě
Place of publishing:
Ostrava
Country of Publication:
Sborník vydaný v ČR
Název konference:
Acta Facultatis Rerum Naturalium Universitas Ostraviensis
Místo konání konference:
Ostrava
Datum zahájení konference:
Typ akce podle státní
příslušnosti účastníků:
Celostátní akce
WoS code:
EID:
Key words in English:
regulation; excitation energy
Annotation in original language:
Effect of short-term exposure to high irradiance (1500 umol.m-2.s-1) on the transfer of excitation energy was studied during greening of barley plants at low (50 umol.m-2.s-1, LI) or high (1000 umol.m-2.s-1, HI) irradiances using 77Kexcitation spectra and room temperature modulated chlorophyll a fluorescence. The ability to down-regulate the efficiency of excitation energy transfer was inhibited for the HI plants grown under the intermittent light regime, due to thestrong suppression of the accumulation of light harvesting complexes (LHC's) of both photosystems II and I. During greening under continuous light the ability to promptly regulate the excitation energy transfer within both photosystems wasassessed from the light induced decrease of the excitation band attributed to the chlorophyll b and carotenoids (460-500 nm) in the 77K excitation spectra of Chl a fluorescence detected at 685 nm and 743 nm, respectively.
Annotation in english language:
Effect of short-term exposure to high irradiance (1500 umol.m-2.s-1) on the transfer of excitation energy was studied during greening of barley plants at low (50 umol.m-2.s-1, LI) or high (1000 umol.m-2.s-1, HI) irradiances using 77Kexcitation spectra and room temperature modulated chlorophyll a fluorescence. The ability to down-regulate the efficiency of excitation energy transfer was inhibited for the HI plants grown under the intermittent light regime, due to thestrong suppression of the accumulation of light harvesting complexes (LHC's) of both photosystems II and I. During greening under continuous light the ability to promptly regulate the excitation energy transfer within both photosystems wasassessed from the light induced decrease of the excitation band attributed to the chlorophyll b and carotenoids (460-500 nm) in the 77K excitation spectra of Chl a fluorescence detected at 685 nm and 743 nm, respectively.
References
Reference
R01:
RIV/61988987:17310/01:00000024
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