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Calvin, Jean,
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241“…In this study, the mechanism of light-enhanced ketone reduction was investigated in detail using several inhibitors of photosynthetic electron transport and of enzymes of the Calvin cycle. It is demonstrated that light intensity and photosynthesis inhibitors significantly affect the ketone reduction activity in Synechococcus. …”
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242por Johnson, Matthew P.“…The ATP and NADPH are then utilized by the enzymes of the Calvin–Benson cycle (the dark reactions), which converts CO(2) into carbohydrate in the chloroplast stroma. …”
Publicado 2016
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243“…The chloroplast and cytosol of plant cells harbor a number of parallel biochemical reactions germane to the Calvin cycle and glycolysis, respectively. These reactions are catalyzed by nuclear encoded, compartment-specific isoenzymes that differ in their physiochemical properties. …”
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244“…Using the Tara Oceans metagenomic dataset, we have identified draft genomes of nine bacteria that possess the genomic potential for anoxygenic phototrophy, carbon fixation via the Calvin-Benson-Bassham cycle, and the oxidation of sulfite and thiosulfate. …”
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245“…The major focus of this review is on improvement of the Calvin–Benson cycle and electron transport. Consideration is also given to how altering regulatory process may provide an additional route to increase photosynthetic efficiency. …”
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246“…We previously reported that CP12 formed a complex with GAPDH and PRK and regulated the activities of these enzymes and the Calvin–Benson cycle under dark conditions as the principal regulatory system in cyanobacteria. …”
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253“…CONCLUSIONS: The ability of CO(2) fixation was created and improved in E. coli by incorporating partial cyanobacterial Calvin cycle and carbon concentrating mechanism, respectively. …”
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254“…The obtained results suggested Cyanobacteria was the dominant microbial group, and predicted the Calvin cycle and the assimilatory nitrate and nitrite reduction played important role in the pathway of carbon fixation and nitrogen metabolism respectively. …”
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258por Voon, Chia P., Law, Yee-Song, Guan, Xiaoqian, Lim, Shey-Li, Xu, Zhou, Chu, Wing-Tung, Zhang, Renshan, Sun, Feng, Labs, Mathias, Leister, Dario, Pribil, Mathias, Hronková, Marie, Kubásek, Jiří, Cui, Yong, Jiang, Liwen, Tsuyama, Michito, Gardeström, Per, Tikkanen, Mikko, Lim, Boon L.“…A higher rate of ATP and NADPH production from the LEF, a higher capacity of carbon fixation by the Calvin–Benson–Bassham (CBB) cycle and a greater consumption of NADH in mitochondria enhance photosynthesis in the chloroplasts, ATP production in the mitochondria and sucrose synthesis in the cytosol and eventually boost plant growth and seed yields in the overexpression lines.…”
Publicado 2021
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259“…CP12 plays an important role in the regulation of the Calvin-Benson-Bassham Cycle participating in the assembly of a supramolecular complex between phosphoribulokinase and glyceraldehyde 3-phosphate dehydrogenase, indicating that calcium signaling could play a role in regulating carbon fixation.…”
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260por Driever, Steven M., Simkin, Andrew J., Alotaibi, Saqer, Fisk, Stuart J., Madgwick, Pippa J., Sparks, Caroline A., Jones, Huw D., Lawson, Tracy, Parry, Martin A. J., Raines, Christine A.“…To increase leaf photosynthesis in wheat, the level of the Calvin–Benson cycle enzyme sedoheptulose-1,7-biphosphatase (SBPase) has been increased through transformation and expression of a Brachypodium distachyon SBPase gene construct. …”
Publicado 2017
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