Quantum Requirement of Photosynthesis in the Primarily Chlorophyll d Containing Prokaryote Acaryochloris marina

Author:

Miyachi Shigetoh1,Strassdat Kerstin2,Miyashita Hideaki3,Senger Horst2

Affiliation:

1. Marine Biotechnology Institute, Bukyo-ku. Tokyo 113, Japan

2. Fachbereich Biologie/Botanik der Philipps-Universität. Karl-von-Frisch-Str., D-35032 Marburg, Germany

3. Marine Biotechnology Institute, Kamaishi Laboratories, Kamaishi, Iwate 026. Japan

Abstract

The recently isolated and characterized unicellular photosynthetic prokaryote Acaryochloris marina (Miyashita et al., 1996) contains chlorophylls a, d , and traces of a chlorophyll c-like pigment as well as phycocyanin. a type of allophycocyanin, zeaxanthin and cx-carotene, chlorophyll d being the predominant chlorophyll component. Quantum requirement measurements of the photosynthetic oxygen evolution resulted in about 12 quanta for excitation of chlorophylls a and d and 18 for phycocyanin. The data also revealed that these pigments are involved in energy absorption for photosynthetic oxygen evolution. Energy is transferred efficiently and equally well between the chlorophylls. Light absorbed by phycocyanin which is organized in phycobiliprotein aggregates (M arquardt et al., 1997), results in a less efficient energy transfer to the reaction center chlorophylls

Publisher

Walter de Gruyter GmbH

Subject

General Biochemistry, Genetics and Molecular Biology

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