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ID 67533
フルテキストURL
fulltext.pdf 1.51 MB
著者
Hippler, Michael Institute of Plant Science and Resources, Okayama University
Khosravitabar, Fatemeh Department of Biological and Environmental Sciences, University of Gothenburg
抄録
In the green alga Chlamydomonas reinhardtii, hydrogen production is catalyzed via the [FeFe]-hydrogenases HydA1 and HydA2. The electrons required for the catalysis are transferred from ferredoxin (FDX) towards the hydrogenases. In the light, ferredoxin receives its electrons from photosystem I (PSI) so that H-2 production becomes a fully light-driven process. HydA1 and HydA2 are highly O-2 sensitive; consequently, the formation of H-2 occurs mainly under anoxic conditions. Yet, photo-H-2 production is tightly coupled to the efficiency of photosynthetic electron transport and linked to the photosynthetic control via the Cyt b(6)f complex, the control of electron transfer at the level of photosystem II (PSII) and the structural remodeling of photosystem I (PSI). These processes also determine the efficiency of linear (LEF) and cyclic electron flow (CEF). The latter is competitive with H-2 photoproduction. Additionally, the CBB cycle competes with H-2 photoproduction. Consequently, an in-depth understanding of light-driven H-2 production via photosynthetic electron transfer and its competition with CO2 fixation is essential for improving photo-H-2 production. At the same time, the smart design of photo-H-2 production schemes and photo-H-2 bioreactors are challenges for efficient up-scaling of light-driven photo-H-2 production.
キーワード
H-2 production
Chlamydomonas reinhardtii
electron transfer
CBB cycle
発行日
2024-07-30
出版物タイトル
Plants
13巻
15号
出版者
MDPI
開始ページ
2114
ISSN
2223-7747
資料タイプ
学術雑誌論文
言語
英語
OAI-PMH Set
岡山大学
著作権者
© 2024 by the authors.
論文のバージョン
publisher
PubMed ID
DOI
Web of Science KeyUT
関連URL
isVersionOf https://doi.org/10.3390/plants13152114
ライセンス
https://creativecommons.org/licenses/by/4.0/
Citation
Hippler, M.; Khosravitabar, F. Light-Driven H2 Production in Chlamydomonas reinhardtii: Lessons from Engineering of Photosynthesis. Plants 2024, 13, 2114. https://doi.org/10.3390/plants13152114
助成機関名
Deutsche Forschungsgemeinschaft
Okayama University
Olle Engkvist Foundation
助成番号
HI 739/13-3
HI 739/25-1
218-0099