Arid
DOI10.1016/j.bbabio.2017.07.001
Photosystem II-cyclic electron flow powers exceptional photoprotection and record growth in the microalga Chlorella ohadii
Ananyev, Gennady1,2; Gates, Colin1,2; Kaplan, Aaron3; Dismukes, G. Charles1,2
通讯作者Dismukes, G. Charles
来源期刊BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS
ISSN0005-2728
EISSN0006-3002
出版年2017
卷号1858期号:11页码:873-883
英文摘要

The desert microalga Chlorella ohadii was reported to grow at extreme light intensities with minimal photo inhibition, tolerate frequent de/re-hydrations, yet minimally employs antenna-based non-photochemical quenching for photoprotection. Here we investigate the molecular mechanisms by measuring Photosystem II charge separation yield (chlorophyll variable fluorescence, Fv/Fm) and flash-induced 02 yield to measure the contributions from both linear (PSII-LEF) and cyclic (PSII-CEF) electron flow within PSII. Cells grow increasingly faster at higher light intensities (mu E/m(2)/s) from low (20) to high (200) to extreme (2000) by escalating photoprotection via shifting from PSII-LEF to PSII-CEF. This shifts PSII charge separation from plastoquinone reduction (PSII-LEF) to plastoquinol oxidation (PSII-CEF), here postulated to enable proton gradient and ATP generation that powers photoprotection. Low light-grown cells have unusually small antennae (332 Chl/PSII), use mainly PSII-LEF (95%) and convert 40% of PSII charge separations into 02 (a high 02 quantum yield of 0.06 mol/mol PSII/flash). High light-grown cells have smaller antenna and lower PSII-LEF (63%). Extreme light grown cells have only 42 Chl/PSII (no LHCII antenna), minimal PSII-LEF (10%), and grow faster than any known phototroph (doubling time 1.3 h). Adding a synthetic quinone in excess to supplement the PQ pool fully uncouples PSII-CEF from its natural regulation and produces maximum PSII-LEF. Upon dark adaptation PSII-LEF rapidly reverts to PSII-CEF, a transient protection mechanism to conserve water and minimize the cost of antenna biosynthesis. The capacity of the electron acceptor pool (plastoquinone pool), and the characteristic times for exchange of (PQH(2))B with PQ(pool) and reoxidation of (PQH(2))(pool) were determined.


英文关键词Chlorella ohadii Cyclic electron transfer Oxygen evolution Photosynthetic efficiency VZAD model Water oxidation
类型Article
语种英语
国家USA ; Israel
收录类别SCI-E
WOS记录号WOS:000412611600001
WOS关键词DIATOM PHAEODACTYLUM-TRICORNUTUM ; OXYGEN-EVOLUTION PATTERNS ; GREEN-ALGA PICOCHLORUM ; CHLOROPHYLL FLUORESCENCE ; STATE TRANSITIONS ; CHLAMYDOMONAS-REINHARDTII ; CHARGE RECOMBINATION ; ARABIDOPSIS-THALIANA ; LIGHT ; CYANOBACTERIA
WOS类目Biochemistry & Molecular Biology ; Biophysics
WOS研究方向Biochemistry & Molecular Biology ; Biophysics
来源机构Hebrew University of Jerusalem
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/197782
作者单位1.Rutgers State Univ, Waksman Inst Microbiol, Piscataway, NJ 08854 USA;
2.Rutgers State Univ, Dept Chem & Chem Biol, Piscataway, NJ 08854 USA;
3.Hebrew Univ Jerusalem, Jerusalem, Israel
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GB/T 7714
Ananyev, Gennady,Gates, Colin,Kaplan, Aaron,et al. Photosystem II-cyclic electron flow powers exceptional photoprotection and record growth in the microalga Chlorella ohadii[J]. Hebrew University of Jerusalem,2017,1858(11):873-883.
APA Ananyev, Gennady,Gates, Colin,Kaplan, Aaron,&Dismukes, G. Charles.(2017).Photosystem II-cyclic electron flow powers exceptional photoprotection and record growth in the microalga Chlorella ohadii.BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS,1858(11),873-883.
MLA Ananyev, Gennady,et al."Photosystem II-cyclic electron flow powers exceptional photoprotection and record growth in the microalga Chlorella ohadii".BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS 1858.11(2017):873-883.
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