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      Cyanobacteria as Biocatalysts for Carbonate Mineralization

      , , ,
      Minerals
      MDPI AG

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          CO2 concentrating mechanisms in algae: mechanisms, environmental modulation, and evolution.

          The evolution of organisms capable of oxygenic photosynthesis paralleled a long-term reduction in atmospheric CO2 and the increase in O2. Consequently, the competition between O2 and CO2 for the active sites of RUBISCO became more and more restrictive to the rate of photosynthesis. In coping with this situation, many algae and some higher plants acquired mechanisms that use energy to increase the CO2 concentrations (CO2 concentrating mechanisms, CCMs) in the proximity of RUBISCO. A number of CCM variants are now found among the different groups of algae. Modulating the CCMs may be crucial in the energetic and nutritional budgets of a cell, and a multitude of environmental factors can exert regulatory effects on the expression of the CCM components. We discuss the diversity of CCMs, their evolutionary origins, and the role of the environment in CCM modulation.
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            Earth's early atmosphere.

            J. Kasting (1993)
            Ideas about atmospheric composition and climate on the early Earth have evolved considerably over the last 30 years, but many uncertainties still remain. It is generally agreed that the atmosphere contained little or no free oxygen initially and that oxygen concentrations increased markedly near 2.0 billion years ago, but the precise timing of and reasons for its rise remain unexplained. Likewise, it is usually conceded that the atmospheric greenhouse effect must have been higher in the past to offset reduced solar luminosity, but the levels of atmospheric carbon dioxide and other greenhouse gases required remain speculative. A better understanding of past atmospheric evolution is important to understanding the evolution of life and to predicting whether Earth-like planets might exist elsewhere in the galaxy.
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              13C and 18O isotopic disequilibrium in biological carbonates: I. Patterns

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                Author and article information

                Journal
                MBSIBI
                Minerals
                Minerals
                MDPI AG
                2075-163X
                December 2012
                October 29 2012
                : 2
                : 4
                : 338-364
                Article
                10.3390/min2040338
                f5d90d22-cb06-42b0-b2c6-af69464c5e8d
                © 2012

                https://creativecommons.org/licenses/by/4.0/

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