Fatty acids, alcohols and hydrocarbons of microbial mats from Lake 2A on Kiritimati Island


Autoria(s): Bühring, Solveig I; Smittenberg, Rienk H; Sachse, Dirk; Lipp, Julius S; Golubic, S; Sachs, Julian P; Hinrichs, Kai-Uwe; Summons, Roger E
Cobertura

LATITUDE: 1.844500 * LONGITUDE: -157.368300

Data(s)

16/06/2010

Resumo

Modern microbial mats are widely recognized as useful analogs for the study of biogeochemical processes relevant to paleoenvironmental reconstruction in the Precambrian. We combined microscopic observations and investigations of biomarker composition to investigate community structure and function in the upper layers of a thick phototrophic microbial mat system from a hypersaline lake on Kiritimati (Christmas Island) in the Northern Line Islands, Republic of Kiribati. In particular, an exploratory incubation experiment with 13C-labeled bicarbonate was conducted to pinpoint biomarkers from organisms actively fixing carbon. A high relative abundance of the cyanobacterial taxa Aphanocapsa and Aphanothece was revealed by microscopic observation, and cyanobacterial fatty acids and hydrocarbons showed 13C-uptake in the labeling experiment. Microscopic observations also revealed purple sulfur bacteria (PSB) in the deeper layers. A cyclic C19:0 fatty acid and farnesol were attributed to this group that was also actively fixing carbon. Background isotopic values indicate Calvin-Benson cycle-based autotrophy for cycC19:0 and farnesol-producing PSBs. Biomarkers from sulfate-reducing bacteria (SRB) in the top layer of the mat and their 13C-uptake patterns indicated a close coupling between SRBs and cyanobacteria. Archaeol, possibly from methanogens, was detected in all layers and was especially abundant near the surface where it contained substantial amounts of 13C-label. Intact glycosidic tetraether lipids detected in the deepest layer indicated other archaea. Large amounts of ornithine and betaine bearing intact polar lipids could be an indicator of a phosphate-limited ecosystem, where organisms that are able to substitute these for phospholipids may have a competitive advantage.

Formato

application/zip, 3 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.741954

doi:10.1594/PANGAEA.741954

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Bühring, Solveig I; Smittenberg, Rienk H; Sachse, Dirk; Lipp, Julius S; Golubic, S; Sachs, Julian P; Hinrichs, Kai-Uwe; Summons, Roger E (2009): A hypersaline microbial mat from the Pacific Atoll Kiritimati: Insight into composition and carbon fixation using biomarker analyses and a 13C-labeling approach. Geobiology, 7(3), 308 - 323, doi:10.1111/j.1472-4669.2009.00198.x

Palavras-Chave #11-CH3-C17:0; 11-methyl-hexandecanoic acid; 12-hydroxyl-Heneicosanoic acid; 12-hydroxyl-Nonadecanoic acid; 12-methyl-Tetradecanoic acid; 12-OH-C19:0; 12-OH-C21:0; 13-methyl-Tetradecanoic acid; 14:0; 14-hydroxyl-heneicosanoic acid; 14-methyl-Hexadecanoic acid; 14-methyl-pentadecanoic acid; 14-methyl pentadecanol; 14-OH-C21:0; 15:0; 15-methyl-Hexadecanoic acid; 15-methyl-Hexadecenoic acid; 16:0; 16:1(n-5); 16:1(n-7); 16:1(n-9); 16:2; 17:0; 17:1(n-6); 17:1(n-8); 18:0; 18:1; 18:1(n-7); 18:1(n-9); 18:2; 19:1; ai-15:0; ai-17:0; AR; Archaeol; C15:0; C15H26O; C16:0; C17:0; C17:1; C17:2; C18:0; C18:1; C19:0; C19:1; C19:2; C20:0; C20:1; C21:0; C22:0; C22:1; C23:0; C24:0; C25:0; C26:0; C27:0; C29:0; C32:0; Center for Marine Environmental Sciences; Cholesta-3.5-diene; Cholestanol; Cholesterol; cis-11-Heptadecenoic acid; cis-11-Hexadecenoic acid; cis-11-Octadecenoic acid; cis-7-Hexadecenoic acid; cis-9-heptadecenoic acid; cis-9-Hexadecenoic acid; cis-9-Octadecenoic acid; cy19:0; cyclo-Nonadecanoic acid; Depth; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Depth bot; Depth top; Dinosterol; Diploptene; Diplopterol; Docosanol; Docosenol; Dotricontanol; Eicosanol; Eicosenol; Ergosta-7,22-dien-3b-ol; Ergostanol; Ergosterol; Farnesol; Gas chromatography; HAND; Heneicosanol; Heptacosanol; Heptadecadienol; Heptadecane; Heptadecanoic acid; Heptadecanol; Heptadecene; Heptadecenol; Hexacosanol; Hexadecadienoic acid; Hexadecane; Hexadecanoic acid; Hexadecanol; Hop-17(21)-ene; Hop-21-ene; Hopanoid; Hopanoid, unknown; Hopene; Hydroxycholesterol; i-15:0; i-16:0; i-17:0; i-17:1(n-7); iC16:0; Kiritimati Island; Kiritimati-Island_Lake-2A; Label; MARUM; Nonacosanol; Nonadecadienol; Nonadecanol; Nonadecenoic acid; Nondecenol; Octadecadienoic acid; Octadecane; Octadecanoic acid; Octadecanol; Octadecene; Octadecenol; Octasanol; Pentacosanol; Pentadecane; Pentadecanoic acid; Pentadecanol; Phy; Phytane; Phytene; Sample code/label; Sampling by hand; Sito-dien-sterol; Sitostanol; Sitosterol; Squalene; Sterene; sum; Sum; Tetracosanol; Tetradecanoic acid; tricontanol; Tricontanol; Tricosanol; unknown hopanoid 2
Tipo

Dataset