4.7 Article

The transition to microbial photosynthesis in hot spring ecosystems

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CHEMICAL GEOLOGY
卷 280, 期 3-4, 页码 344-351

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ELSEVIER
DOI: 10.1016/j.chemgeo.2010.11.022

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Photosynthesis; Chemosynthesis; Sulfide oxidation; Sulfide oxidation rate; Hydrothermal ecosystem

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Even casual observations of continental hot springs reveal that photosynthesis has its limits. In an effort to explore the transition to photosynthesis, field measurements of temperature and pH were made at 996 hot spring locations at Yellowstone National Park ranging from 14 degrees to 94 degrees C and pH from 0.8 to 9.7. In addition, sulfide measurements were made in 426 of these locations showing concentrations up to 8820 mu g L-1 total sulfide. These data indicate that the previously established upper temperature (73-75 degrees C) for the transition to photosynthesis is reached in many basic hot springs, but that the transition occurs at lower temperature with decreasing pH below similar to 6.5. As an example, no strong evidence for photosynthesis was found above 45 degrees C at pH similar to 2. In several locations, photosynthesis appears to be suppressed despite temperatures and pH values that permit photosynthesis elsewhere. Sulfide concentrations may be responsible for the suppression of photosynthesis at these sites. Total sulfide concentrations were observed to decrease downstream in hot spring outflow channels. Abiotic processes (degassing, oxidation, mineral precipitation, etc.) are too slow to account for these decreases, suggesting an explanation from microbial sulfide oxidation that is supported by field experiments. Microbial sulfide oxidation may determine the ultimate suitability of some hot springs for microbial photosynthesis. (C) 2010 Elsevier B.V. All rights reserved.

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