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・ Photostylus pycnopterus
・ Photoswitch
・ Photosynth
・ Photosynthate partitioning
・ Photosynthesis
・ Photosynthesis system
・ Photosynthetic (album)
・ Photosynthetic capacity
・ Photosynthetic efficiency
・ Photosynthetic picoplankton
・ Photosynthetic pigment
・ Photosynthetic reaction centre
・ Photosynthetic reaction centre protein family
・ Photosynthetic state transition
・ Photosynthetically active radiation
Photosystem
・ Photosystem I
・ Photosystem II
・ Photosystem II light-harvesting protein
・ Phototaxis
・ Phototendering
・ Phototheca
・ Phototherapeutic keratectomy
・ Photothermal effect
・ Photothermal microspectroscopy
・ Photothermal optical microscopy
・ Photothermal spectroscopy
・ Photothermal therapy
・ Photothèque (Luxembourg)
・ PhotoToMovie


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Photosystem : ウィキペディア英語版
Photosystem

Photosystems are functional and structural units of protein complexes involved in photosynthesis that together carry out the primary photochemistry of photosynthesis: the absorption of light and the transfer of energy and electrons. They are found in the thylakoid membranes of plants, algae and cyanobacteria (in plants and algae these are located in the chloroplasts), or in the cytoplasmic membrane of photosynthetic bacteria. There are two kinds of photosystems: II and I, respectively.
==Reaction centers==
At the heart of a photosystem lies the reaction center, which is an enzyme that uses light to reduce molecules. In a photosystem, this reaction center is surrounded by light-harvesting complexes that enhance the absorption of light.
Two families of reaction centers in photosystems exist: type I reaction centers (such as photosystem I (P700) in chloroplasts and in green-sulphur bacteria) and type II reaction centers (such as photosystem II (P680) in chloroplasts and in non-sulphur purple bacteria).
Each photosystem can be identified by the wavelength of light to which it is most reactive (700 and 680 nanometers, respectively for PSI and PSII in chloroplasts), the amount and type of light-harvesting complexes present and the type of terminal electron acceptor used.
Type I photosystems use ferredoxin-like iron-sulfur cluster proteins as terminal electron acceptors, while type II photosystems ultimately shuttle electrons to a quinone terminal electron acceptor. One has to note that both reaction center types are present in chloroplasts and cyanobacteria, working together to form a unique photosynthetic chain able to extract electrons from water, creating oxygen as a byproduct.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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