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Calvin, Jean,
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1061“…Results: We formulated the core metabolism of Arabidopsis thaliana based on recent knowledge from literature, including the Calvin cycle, glycolysis and citric acid cycle, glyoxylate cycle, urea cycle, sucrose synthesis, and the starch metabolism. …”
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1062por Versantvoort, Wouter, Guerrero-Cruz, Simon, Speth, Daan R., Frank, Jeroen, Gambelli, Lavinia, Cremers, Geert, van Alen, Theo, Jetten, Mike S. M., Kartal, Boran, Op den Camp, Huub J. M., Reimann, Joachim“…The pathways for the subsequent oxidation of formaldehyde to carbon dioxide and for the Calvin–Benson–Bassham cycle are conserved in all species. …”
Publicado 2018
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1063por Alcamán-Arias, María E., Pedrós-Alió, Carlos, Tamames, Javier, Fernández, Camila, Pérez-Pantoja, Danilo, Vásquez, Mónica, Díez, Beatriz“…Inorganic carbon assimilation through the Calvin–Benson cycle was almost exclusively due to Mastigocladus, which was the main primary producer at lower temperatures. …”
Publicado 2018
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1064por Ding, Zehong, Tie, Weiwei, Fu, Lili, Yan, Yan, Liu, Guanghua, Yan, Wei, Li, Yanan, Wu, Chunlai, Zhang, Jiaming, Hu, Wei“…Trans-regulatory co-expression network revealed that lncRNAs exhibited tissue-specific expression patterns and they preferred to function differently in distinct tissues: e.g., cell-related metabolism, cell wall, and RNA regulation of transcription in folded leaf (FL); degradation of major carbohydrate (CHO) metabolism, calvin cycle and light reaction, light signaling, and tetrapyrrole synthesis in full expanded leaf (FEL); synthesis of major CHO metabolism, nitrogen-metabolism, photosynthesis, and redox in bottom leaf (BL); and hormone metabolism, secondary metabolism, calcium signaling, and abiotic stress in root (RT). …”
Publicado 2019
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1065“…Additionally, enriched Bins included Receptor kinases, Secondary metabolic process in flavonoids, Abiotic stress, and Biotic stress in the early stage of light exposure, but PS Calvin cycle, RNA regulation of transcription, and UDP glucosyl and glucoronyl transferases in the later stage. …”
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1066por Lezcano, María Ángeles, Moreno-Paz, Mercedes, Carrizo, Daniel, Prieto-Ballesteros, Olga, Fernández-Martínez, Miguel Ángel, Sánchez-García, Laura, Blanco, Yolanda, Puente-Sánchez, Fernando, de Diego-Castilla, Graciela, García-Villadangos, Miriam, Fairén, Alberto G., Parro, Víctor“…Carbon isotopic ratios suggested the Calvin–Benson–Bassham cycle as the major pathway for carbon dioxide fixation in the mats at 2°C and 8°C, and the reductive tricarboxylic acid cycle and/or the 3-hydroxypropionate bicycle for the mat at 88°C, indicating different metabolisms as a function of the prevailing temperature of each mat. …”
Publicado 2019
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1067por Ray, Angelique E., Zhang, Eden, Terauds, Aleks, Ji, Mukan, Kong, Weidong, Ferrari, Belinda C.“…Atmospheric chemosynthesis uses energy liberated from the oxidation of atmospheric hydrogen to drive the Calvin-Benson-Bassham (CBB) cycle through a new chemotrophic form of ribulose-1,5-bisphosphate carboxylase/oxygenase (RuBisCO), designated IE. …”
Publicado 2020
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1068“…Photosynthesis is a biological process which converts light energy into chemical energy that is used in the Calvin–Benson cycle to produce organic compounds. …”
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1069“…Sedoheptulose-1,7-bisphosphatase (SBPase) is a crucial enzyme for photosynthetic carbon assimilation in the Calvin-Benson cycle. Previous studies have shown that overexpression of SBPase is advantageous to chilling tolerance in plants; however, the mechanisms of SBPase acting in the improvement of chilling tolerance remain largely unknown. …”
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1070por Ameztoy, Kinia, Sánchez-López, Ángela María, Muñoz, Francisco José, Bahaji, Abdellatif, Almagro, Goizeder, Baroja-Fernández, Edurne, Gámez-Arcas, Samuel, De Diego, Nuria, Doležal, Karel, Novák, Ondřej, Pěnčík, Ales, Alpízar, Adán, Rodríguez-Concepción, Manuel, Pozueta-Romero, Javier“…In Arabidopsis thaliana plants exposed to small fungal VCs, growth promotion is accompanied by reduction of the thiol redox of Calvin-Benson cycle (CBC) enzymes and changes in the levels of shikimate and 2-C-methyl-D-erythritol 4-phosphate (MEP) pathway-related compounds. …”
Publicado 2021
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1071por Garber, Arkadiy I., Zehnpfennig, Jessica R., Sheik, Cody S., Henson, Michael W., Ramírez, Gustavo A., Mahon, Andrew R., Halanych, Kenneth M., Learman, Deric R.“…Although organotrophy is pervasive, nitrification and sulfide oxidation are the dominant lithotrophic pathways and likely fuel carbon fixation via the reverse tricarboxylic acid and Calvin cycles. Oxygen-dependent terminal oxidases are common, and genes for reduction of oxidized nitrogen are sporadically present in our samples. …”
Publicado 2021
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1072por Liu, Nian, Liu, Jing, Fan, Shihang, Liu, Hongfang, Zhou, Xue-Rong, Hua, Wei, Zheng, Ming“…More importantly, most maize genes encoding lipid-related transcription factors, triacylglycerol (TAG) biosynthetic enzymes, pentose phosphate pathway (PPP) and Calvin Cycle proteins were not regulated during seed oil synthesis, despite the presence of many homologs in the maize genome. …”
Publicado 2022
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1073por Jing, Hongmei, Xiao, Xiang, Zhang, Yue, Li, Zhiyong, Jian, Huahua, Luo, Yingfeng, Han, Zhuang“…The predominance of heterotrophic over chemolithoautotrophic pathways in this transition zone was found, and a high abundance of genes related to respiration and carbon fixation (i.e., the intact Calvin and rTCA cycles) were detected as well, which might reflect the intensive microbial activities known to occur in this deep biosphere. …”
Publicado 2022
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1074por Wang, Xiayu, Li, Wei, Cheng, Aoqi, Shen, Taiming, Xiao, Yutian, Zhu, Min, Pan, Xiaodong, Yu, Longjiang“…The abundances of the Calvin–Benson cycle functional genes cbbL and cbbM as well as the autotrophic CO(2)-fixing bacterial communities were characterized in the karst groundwater samples with different levels of nitrogen pollution. …”
Publicado 2022
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1075por Penzler, Jan-Ferdinand, Marino, Giada, Reiter, Bennet, Kleine, Tatjana, Naranjo, Belen, Leister, Dario“…These differences are associated with changes in the levels of 260 proteins, including components of the Calvin–Benson cycle, photosystems II and I, and the NDH complex, in pgr5-1 relative to the wild type (WT), pgr5-Cas, and pgrl1ab. …”
Publicado 2022
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1076por Amy Lyu, Ming-Ju, Tang, Qiming, Wang, Yanjie, Essemine, Jemaa, Chen, Faming, Ni, Xiaoxiang, Chen, Genyun, Zhu, Xin-Guang“…In line with these findings, a (13)CO(2) pulse-labeling experiment showed that the CO(2) initially fixed into C(4) acid was not directly released to the Calvin–Benson–Bassham cycle in the type II C(3)-C(4) species. …”
Publicado 2022
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1077por Yordanov, Deyan T., Rodríguez, Liss V., Balabanski, Dimiter L., Bieroń, Jacek, Bissell, Mark L., Blaum, Klaus, Cheal, Bradley, Ekman, Jörgen, Gaigalas, Gediminas, Garcia Ruiz, Ronald F., Georgiev, Georgi, Gins, Wouter, Godefroid, Michel R., Gorges, Christian, Harman, Zoltán, Heylen, Hanne, Jönsson, Per, Kanellakopoulos, Anastasios, Kaufmann, Simon, Keitel, Christoph H., Lagaki, Varvara, Lechner, Simon, Maaß, Bernhard, Malbrunot-Ettenauer, Stephan, Nazarewicz, Witold, Neugart, Rainer, Neyens, Gerda, Nörtershäuser, Wilfried, Oreshkina, Natalia S., Papoulia, Asimina, Pyykkö, Pekka, Reinhard, Paul-Gerhard, Sailer, Stefan, Sánchez, Rodolfo, Schiffmann, Sacha, Schmidt, Stefan, Wehner, Laura, Wraith, Calvin, Xie, Liang, Xu, Zhengyu, Yang, XiaofeiEnlace del recurso
Publicado 2020
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1078por Sarthi, Jessica B., Trumbull, Annie M., Abazari, Shayda M., van Unen, Vincent, Chan, Joshua E., Joo, Nam Soo, Jiang, Yanfen, Kuo, Calvin J., Sellers, Zachary M.Enlace del recurso
Publicado 2023
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1079por Yamamoto, Shinya, Yamayoshi, Seiya, Ito, Mutsumi, Sakai-Tagawa, Yuko, Nakachi, Ichiro, Baba, Rie, Kamimoto, Shigenobu, Ogura, Takayuki, Hagiwara, Shigehiro, Kato, Hideaki, Nakajima, Hideaki, Uwamino, Yoshifumi, Yagi, Kazuma, Sugaya, Norio, Nagai, Hiroyuki, Saito, Makoto, Adachi, Eisuke, Koga, Michiko, Tsutsumi, Takeya, Duong, Calvin, Okuda, Moe, Murakami, Jurika, Furusawa, Yuri, Ujie, Michiko, Iwatsuki-Horimoto, Kiyoko, Yotsuyanagi, Hiroshi, Kawaoka, YoshihiroEnlace del recurso
Publicado 2023
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1080por Zhang, Katherine K., Zhang, Peichuan, Kodur, Anagha, Erturk, Ilkim, Burns, Calvin M., Kenyon, Cynthia, Miller, Richard A., Endicott, S. JosephEnlace del recurso
Publicado 2023
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