Comparison of light induced and cell cycle dependent changes in the photosynthetic apparatus: a fluorescence induction study on the green alga Scenedesmus obliquus
Changes in the photosynthetic apparatus occurring during the synchronous cell cycle of the green alga Scenedesmus obliquus are compared to the adaptational response induced by light intensity variations. To investigate and compare these two phenomena, we analyze the polyphasic rise of the chlorophyl...
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Veröffentlicht in: | Photosynthesis research 1999-05, Vol.60 (2/3), p.217-227 |
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description | Changes in the photosynthetic apparatus occurring during the synchronous cell cycle of the green alga Scenedesmus obliquus are compared to the adaptational response induced by light intensity variations. To investigate and compare these two phenomena, we analyze the polyphasic rise of the chlorophyll fluorescence yield exhibited by plants and cyanobacteria when exposed to high intensity actinic light. Four fluorescence parameters are calculated which are closely related to Photosystem II (PS II) structure and function: ABS/RC, the antenna size of PS II; ^sub PO^, the quantum yield for reduction of the primary PS II quinone acceptor; q^sub PQ^, related to the size of the plastoquinone pool; q^sub Emax^, the capacity for pH dependent non-photochemical quenching. The capacity for non-photochemical quenching changes in response to light intensity variations, but it is not affected by the developmental changes occurring during the cell cycle. In contras t, for ABS/RC, ^sub PO^ and q^sub PQ^, we observe light induced as well as cell cycle dependent variations. We discuss the relations of the four fluorescence parameters to the molecular organization of the photosynthetic apparatus and its cell cycle and light dependent changes.[PUBLICATION ABSTRACT] |
doi_str_mv | 10.1023/A:1006247514691 |
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To investigate and compare these two phenomena, we analyze the polyphasic rise of the chlorophyll fluorescence yield exhibited by plants and cyanobacteria when exposed to high intensity actinic light. Four fluorescence parameters are calculated which are closely related to Photosystem II (PS II) structure and function: ABS/RC, the antenna size of PS II; ^sub PO^, the quantum yield for reduction of the primary PS II quinone acceptor; q^sub PQ^, related to the size of the plastoquinone pool; q^sub Emax^, the capacity for pH dependent non-photochemical quenching. The capacity for non-photochemical quenching changes in response to light intensity variations, but it is not affected by the developmental changes occurring during the cell cycle. In contras t, for ABS/RC, ^sub PO^ and q^sub PQ^, we observe light induced as well as cell cycle dependent variations. 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To investigate and compare these two phenomena, we analyze the polyphasic rise of the chlorophyll fluorescence yield exhibited by plants and cyanobacteria when exposed to high intensity actinic light. Four fluorescence parameters are calculated which are closely related to Photosystem II (PS II) structure and function: ABS/RC, the antenna size of PS II; ^sub PO^, the quantum yield for reduction of the primary PS II quinone acceptor; q^sub PQ^, related to the size of the plastoquinone pool; q^sub Emax^, the capacity for pH dependent non-photochemical quenching. The capacity for non-photochemical quenching changes in response to light intensity variations, but it is not affected by the developmental changes occurring during the cell cycle. In contras t, for ABS/RC, ^sub PO^ and q^sub PQ^, we observe light induced as well as cell cycle dependent variations. 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subjects | acclimation biological development Cell cycle chlorophyll Cyanobacteria fluorescence Freshwater Light light harvesting complex light intensity Photosynthesis photosystem II plants quinones Scenedesmus Scenedesmus obliquus |
title | Comparison of light induced and cell cycle dependent changes in the photosynthetic apparatus: a fluorescence induction study on the green alga Scenedesmus obliquus |
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