Anoxygenic Photosynthesis and Dark Carbon Metabolism under micro-oxic conditions in the Purple Sulfur Bacterium “Thiodictyon syntrophicum” nov. strain Cad16T

Author:

Luedin Samuel MORCID,Storelli NicolaORCID,Danza FrancescoORCID,Roman Samuele,Wittwer Matthias,Pothier Joël FORCID,Tonolla MauroORCID

Abstract

1.ABSTRACTThe microbial ecosystem of the meromictic Lake Cadagno (Ticino, Swiss Alps) has been studied intensively to understand metabolic functions driven by the highly abundant anoxygenic phototrophic sulfur bacteria of the families Chromatiaceae and Chlorobiaceae. It was found that the sequenced isolate “Thiodictyon syntrophicum” nov. sp. str. Cad16T, belonging to the Chromatiaceae, may fix 26% of all bulk inorganic carbon in the chemocline at day and night. With this study, we elucidated the mode of dark carbon fixation of str. Cad16Twith a combination of long-term monitoring of key physicochemical parameters with CTD,14C-incorporation experiments and quantitative proteomics ofin situdialysis bag incubations of pure cultures. Regular vertical CTD profiling during the study period in summer 2017 revealed that the chemocline sank from 12 to 14 m which was accompanied by a bloom of cyanobacteria and the subsequent oxygenation of the deeper water column. Sampling was performed both day and night in September. While CO2assimilation rates were higher during the light period, the relative change in the proteome (663 quantified proteins) was only 1% of all CDS encoded in str. Cad16T. Oxidative respiration was thereby upregulated at light, whereas stress-related mechanisms prevailed during the night. These results indicate that the low light availability due to high cell concentrations and the oxygenation of the chemocline induced a mixotrophic growth in str. Cad16T.The complete proteome data have been deposited to the ProteomeXchange with identifier PXD010641.

Publisher

Cold Spring Harbor Laboratory

Reference79 articles.

1. The Microbial Engines That Drive Earth's Biogeochemical Cycles

2. Variable fluorescence in green sulfur bacteria;Biochim Biophys Acta,2007

3. Blankenship RE , Madigan MT , Bauer CE , editors. Anoxygenic Photosynthetic Bacteria. Dordrecht: Springer Netherlands; 1995. http://link.springer.com/10.1007/0-306-47954-0. Accessed 19 Apr 2016.

4. The Family Chromatiaceae

5. Carotenoids of Thiorhodeceae. 8. Isolation and characterization of a Thiothece, Lamprocystis and Thiodictyon strain and their carotenoid pigments;Arch Für Mikrobiol,1968

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