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Titlebook: BioHydrogen; Oskar R. Zaborsky,John R. Benemann (Consultant),An Book 1998 Springer Science+Business Media New York 1998 algae.bacteria.bio

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https://doi.org/10.1007/b102384algae; bacteria; biology; molecular biology; production
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978-1-4757-8553-1Springer Science+Business Media New York 1998
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Oskar R. Zaborsky,John R. Benemann (Consultant),An
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Maximizing Photosynthetic Productivity and Light Utilization in Microalgae by Minimizing the Light-Hic productivity further to ≈650 mmol O. mol. Chl s. in these cells. From the analysis of the results, it was inferred that . with a highly truncated chlorophyll antenna size, when grown under supplemental CO. rather than NaHCO., will display light-saturated rates of photosynthesis approaching 2000 m
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Effect of Hydrogenase 3 Over-Expression and Disruption of Nitrate Reductase on Fermamentive Hydrogente hydrogenlyase system. These results revealed that the elimination of the branch reaction in formate utilization resulted in the construction of a versatile strain for practical hydrogen production.
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A Toolkit for Metabolic Engineering of Bacteriauced into the cell, it will be necessary to optimize expression of these genes during the hydrogen production (slow- or non-growth) stage of the culture. To enable controlled and reproducible expression of the genes for a redirected metabolic pathway, a metabolic engineering toolkit has been develop
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