Literature DB >> 21396735

Excitation energy transfer in intact cells and in the phycobiliprotein antennae of the chlorophyll d containing cyanobacterium Acaryochloris marina.

Christoph Theiss1, Franz-Josef Schmitt, Jörg Pieper, Collins Nganou, Moritz Grehn, Marco Vitali, Rachel Olliges, Hans Joachim Eichler, Hann-Jörg Eckert.   

Abstract

The cyanobacterium Acaryochloris marina is unique because it mainly contains Chlorophyll d (Chl d) in the core complexes of PS I and PS II instead of the usually dominant Chl a. Furthermore, its light harvesting system has a structure also different from other cyanobacteria. It has both, a membrane-internal chlorophyll containing antenna and a membrane-external phycobiliprotein (PBP) complex. The first one binds Chl d and is structurally analogous to CP43. The latter one has a rod-like structure consisting of three phycocyanin (PC) homohexamers and one heterohexamer containing PC and allophycocyanin (APC). In this paper, we give an overview on the investigations of excitation energy transfer (EET) in this PBP-light-harvesting system and of charge separation in the photosystem II (PS II) reaction center of A. marina performed at the Technische Universität Berlin. Due to the unique structure of the PBP antenna in A. marina, this EET occurs on a much shorter overall time scale than in other cyanobacteria. We also briefly discuss the question of the pigment composition in the reaction center (RC) of PS II and the nature of the primary donor of the PS II RC.
Copyright © 2011 Elsevier GmbH. All rights reserved.

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Year:  2011        PMID: 21396735     DOI: 10.1016/j.jplph.2011.02.002

Source DB:  PubMed          Journal:  J Plant Physiol        ISSN: 0176-1617            Impact factor:   3.549


  8 in total

Review 1.  Phycobilisome: architecture of a light-harvesting supercomplex.

Authors:  Mai Watanabe; Masahiko Ikeuchi
Journal:  Photosynth Res       Date:  2013-10-01       Impact factor: 3.573

2.  Excitation energy transfer in phycobiliproteins of the cyanobacterium Acaryochloris marina investigated by spectral hole burning.

Authors:  Jörg Pieper; Margus Rätsep; Maksym Golub; Franz-Josef Schmitt; Petrica Artene; Hann-Jörg Eckert
Journal:  Photosynth Res       Date:  2017-05-31       Impact factor: 3.573

3.  Biofilm growth and near-infrared radiation-driven photosynthesis of the chlorophyll d-containing cyanobacterium Acaryochloris marina.

Authors:  Lars Behrendt; Verena Schrameyer; Klaus Qvortrup; Luisa Lundin; Søren J Sørensen; Anthony W D Larkum; Michael Kühl
Journal:  Appl Environ Microbiol       Date:  2012-03-30       Impact factor: 4.792

4.  Features of temporal behavior of fluorescence recovery in Synechocystis sp. PCC6803.

Authors:  E G Maksimov; K E Klementiev; E A Shirshin; G V Tsoraev; I V Elanskaya; V Z Paschenko
Journal:  Photosynth Res       Date:  2015-03-24       Impact factor: 3.573

5.  Excitation energy transfer and vibronic coherence in intact phycobilisomes.

Authors:  Sourav Sil; Ryan W Tilluck; Nila Mohan T M; Chase H Leslie; Justin B Rose; Maria Agustina Domínguez-Martín; Wenjing Lou; Cheryl A Kerfeld; Warren F Beck
Journal:  Nat Chem       Date:  2022-09-19       Impact factor: 24.274

6.  Phycobilisome Mobility and Its Role in the Regulation of Light Harvesting in Red Algae.

Authors:  Radek Kaňa; Eva Kotabová; Martin Lukeš; Stěpán Papáček; Ctirad Matonoha; Lu-Ning Liu; Ondřej Prášil; Conrad W Mullineaux
Journal:  Plant Physiol       Date:  2014-06-19       Impact factor: 8.340

Review 7.  Photosynthesis at the far-red region of the spectrum in Acaryochloris marina.

Authors:  Syed Lal Badshah; Yahia Mabkhot; Salim S Al-Showiman
Journal:  Biol Res       Date:  2017-05-19       Impact factor: 5.612

8.  Reactive oxygen production induced by near-infrared radiation in three strains of the Chl d-containing cyanobacterium Acaryochloris marina.

Authors:  Lars Behrendt; Marc Staal; Simona M Cristescu; Frans Jm Harren; Martin Schliep; Anthony Wd Larkum; Michael Kühl
Journal:  F1000Res       Date:  2013-02-13
  8 in total

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