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Calvin, Jean,
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261por Börner, Thomas“…In the 1970s, the first evidence for plastid signals controlling nuclear gene expression was provided by studies on plastid ribosome deficient mutants with reduced amounts and/or activities of nuclear-encoded chloroplast proteins including the small subunit of Rubisco, ferredoxin NADP+ reductase, and enzymes of the Calvin cycle. This review describes first models of plastid-to-nucleus signaling and their discovery. …”
Publicado 2017
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262“…Moreover, diverse protein patterns of photosynthetic proteins imply that the modulations of stomatal CO(2) exchange, photosystem II, Calvin cycle, ATP synthesis, and chlorophyll biosynthesis are crucial for plant heat tolerance.…”
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263por Küken, Anika, Sommer, Frederik, Yaneva-Roder, Liliya, Mackinder, Luke CM, Höhne, Melanie, Geimer, Stefan, Jonikas, Martin C, Schroda, Michael, Stitt, Mark, Nikoloski, Zoran, Mettler-Altmann, Tabea“…We then employed a computational strategy to estimate how fluxes through the Calvin-Benson cycle are compartmented between the pyrenoid and the stroma. …”
Publicado 2018
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264por Guzman, Michael S., Rengasamy, Karthikeyan, Binkley, Michael M., Jones, Clive, Ranaivoarisoa, Tahina Onina, Singh, Rajesh, Fike, David A., Meacham, J. Mark, Bose, Arpita“…Deletion of the genes encoding ruBisCO (the CO(2)-fixing enzyme of the Calvin-Benson-Bassham cycle) leads to a 90% reduction in EEU. …”
Publicado 2019
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265“…The present review focuses on three processes that have previously been identified as promising engineering targets for enhancing crop yield by accelerating dynamic photosynthesis, all three of them involving or being linked to processes in the chloroplast, i.e. relaxation of non-photochemical quenching, Calvin–Benson–Bassham cycle enzyme activation/deactivation and dynamics of stomatal conductance. …”
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266por Flamholz, Avi I, Dugan, Eli, Blikstad, Cecilia, Gleizer, Shmuel, Ben-Nissan, Roee, Amram, Shira, Antonovsky, Niv, Ravishankar, Sumedha, Noor, Elad, Bar-Even, Arren, Milo, Ron, Savage, David F“…Many photosynthetic organisms employ a CO(2) concentrating mechanism (CCM) to increase the rate of CO(2) fixation via the Calvin cycle. CCMs catalyze ≈50% of global photosynthesis, yet it remains unclear which genes and proteins are required to produce this complex adaptation. …”
Publicado 2020
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269por Henard, Calvin A., Wu, Chao, Xiong, Wei, Henard, Jessica M., Davidheiser-Kroll, Brett, Orata, Fabini D., Guarnieri, Michael T.“…RNA sequencing identified active transcription of several carboxylating enzymes, including key enzymes of the Calvin and serine cycles, that could mediate CO(2) assimilation during cultivation with both CH(4) and CO(2) as carbon sources. …”
Publicado 2021
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272por Cohen, Calvin J.Enlace del recurso
Publicado 2006
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276“…The increase in net photosynthetic rate was associated with an increase in: 1) maximum and effective quantum yield of PSII; 2) activities of Calvin cycle enzymes; and 3) levels of mRNA relative expression of several genes involved in Calvin cycle. …”
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277por Chen, Shuangchen, Zhao, Hongjiao, Zou, Chenchen, Li, Yongsheng, Chen, Yifei, Wang, Zhonghong, Jiang, Yan, Liu, Airong, Zhao, Puyan, Wang, Mengmeng, Ahammed, Golam J.“…Claroideum BEG 210), and Funneliformis mosseae (Fm) were investigated with respect to the growth, gas exchange parameters, enzymes activities in Calvin cycles and related gene expression in cucumber seedlings. …”
Publicado 2017
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278“…Interestingly, transcription of cbbM coding RuBisCO, the key enzyme of the Calvin-Benson-Bassham cycle, was similar in aerobic and microaerobic/anaerobic cultures. …”
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279por Menon, Balaraj B., Dou, Zhicheng, Heinhorst, Sabine, Shively, Jessup M., Cannon, Gordon C.“…BACKGROUND: The carboxysome is a bacterial microcompartment that consists of a polyhedral protein shell filled with ribulose 1,5-bisphosphate carboxylase/oxygenase (RubisCO), the enzyme that catalyzes the first step of CO(2) fixation via the Calvin-Benson-Bassham cycle. METHODOLOGY/PRINCIPAL FINDINGS: To analyze the role of RubisCO in carboxysome biogenesis in vivo we have created a series of Halothiobacillus neapolitanus RubisCO mutants. …”
Publicado 2008
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280“…We introduce modifications in glycolytic pathways and the Calvin Benson cycle to increase carbon flux and redirect it towards carbon fixation. …”
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