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|a Engineering formate assimilation in Synechocystis sp. PCC 6803
|c vorgelegt von M. Sc. Shanshan Song ; 1. Gutachter: Prof. Dr. Martin Hagemann, 2. Gutachter: Prof. Dr. Andreas P.M. Weber
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|a Rostock
|c Mai 2019
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|a IX, 92, iv Seiten
|b Illustrationen, Diagramme (überwiegend schwarz-weiß)
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|a Text
|b txt
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|a GutachterInnen: Prof. Dr. Martin Hagemann (Rostock University, Institute of Biology), Prof. Dr. Andreas P.M. Weber (Institute of Plant Biochemistry)
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|b Dissertation
|c Universität Rostock
|d 2019
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|a To improve photosynthetic efficiency, a synthetic formate assimilation (FA) pathway is designed in this study to function as an additional carbon-fixing route, which possibly also reduce the photorespiratory loss of CO2 via the inhibition of glycine decarboxylation. To establish FA, genes encoding the proteins 10-formyl-THF ligase (FTL), 5,10-methylene-THF dehydrogenase (MtdA), and 5,10-methenyl-THF cyclohydrolase (FchA) from M. extorquens AM1 were transferred into the model cyanobacterium Synechocystis sp. PCC 6803.<eng>
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|d Rostock : Universität, 2019
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