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Publikační činnost
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Record type:
stať ve sborníku (D)
Home Department:
Katedra fyziky (31300)
Title:
Room temperature chlorophyll a fluorescence recorded at different spectral region of excitation and detection
Citace
Štroch, M., Podolinská, J., Čajánek, M. a Špunda, V. Room temperature chlorophyll a fluorescence recorded at different spectral region of excitation and detection.
In:
The 14th FESPB Congress: The 14th FESPB Congress, Book of Abstracts 2004-08-23 Cracow, Poland.
Cracow: Polish Academy of Sciences, 2004. Polish Academy of Sciences, 2004. s. 173-174. ISBN 0137-5881.
Subtitle
Publication year:
2004
Obor:
Biofyzika
Number of pages:
2
Page from:
173
Page to:
174
Form of publication:
ISBN code:
0137-5881
ISSN code:
Proceedings title:
The 14th FESPB Congress, Book of Abstracts
Proceedings:
Publisher name:
Polish Academy of Sciences
Place of publishing:
Cracow
Country of Publication:
Sborník vydaný v zahraničí
Název konference:
The 14th FESPB Congress
Místo konání konference:
Cracow, Poland
Datum zahájení konference:
Typ akce podle státní
příslušnosti účastníků:
Celosvětová akce
WoS code:
EID:
Key words in English:
chlorophyll fluorescence; non-photochemical quenching; photosystem I and II
Annotation in original language:
Chlorophyll a fluorescence at room temperature recorded by PAM fluorometr reflects mainly emission from photosystem II, but the contribution of photosystem I emission to the detected signal should not be neglected under some conditions, especially for plants with reduced size of light-harvesting complexes of photosystem II. Using different spectral region of detection we attempted to assess the distorting effect of photosystem I emission on determination of various fluorescence parameters. Further, the effect of fluorescence reabsorption was studied using excitation in blue and red spectral region.
Annotation in english language:
Chlorophyll a fluorescence at room temperature recorded by PAM fluorometr reflects mainly emission from photosystem II, but the contribution of photosystem I emission to the detected signal should not be neglected under some conditions, especially for plants with reduced size of light-harvesting complexes of photosystem II. Using different spectral region of detection we attempted to assess the distorting effect of photosystem I emission on determination of various fluorescence parameters. Further, the effect of fluorescence reabsorption was studied using excitation in blue and red spectral region.
References
Reference
R01:
RIV/61988987:17310/04:00000078
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