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Nature of Obligate Photoautotrophy
Annual Review of Plant Physiology, 1978PHOTOSYNTHETIC BACTERIA 69 Thiorhodaceae ....... 69 Facultative photoautotrophy " ....... , , , ......... , 69 Athiorhodaceae , " " ......... , ... ,., 70 Facultative photoautotrophy and photoorganotrophy , 70 Photomixotrophy 71 Chlorobacteriaceae , ,." "., , ....... ,., ,',., 72 Obligate photolithoautotrophy ,
C R Benedict
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Green Roots: Photosynthesis and Photoautotrophy in an Underground Plant Organ [PDF]
The potential for photosynthetic and photoautotrophic growth was studied in hairy root cultures of Asteraceae and Solanaceae species. Upon transfer to light, initially heterotrophic root cultures of Acmella oppositifolia and Datura innoxia greened rapidly, differentiated chloroplasts, and developed light-dependent CO2 fixation in the cortical cells ...
Víctor M Loyola-Vargas +1 more
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STIMULATION OF THE PHOTOAUTOTROPHY OF IN VITRO PLANTS
Acta Horticulturae, 1992G Reuther
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Anaerobic respiration and photoautotrophy in the evolution of prokaryotes
Origins of Life and Evolution of Biospheres, 1977Fujio Egami
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Does oligotrophy favor chemoautotrophy over photoautotrophy?
Eyal Rahav +2 more
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Nickel regulation of photoautotrophy in a cyanobacterium
Water, Air, and Soil Pollution, 1990Ni inhibited photoautotrophic growth, nitrogenase activity, oxygenic photosynthesis (O2-evolution, 14CO2-uptake) and respiratory O2-uptake in the diazotrophic cyanobacterium, Nostoc muscorum. 14CO2-uptake was more sensitive to Ni compared to nitrogenase activity, O2evolution or respiratory O2-uptake.
Ravi Kumar asthana +2 more
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Horizontally Acquired Nitrate Reductase Realized Kleptoplastic Photoautotrophy of Rapaza viridis
Plant And Cell Physiology, 2023Abstract While photoautotrophic organisms utilize inorganic nitrogen as the nitrogen source, heterotrophic organisms utilize organic nitrogen and thus do not generally have an inorganic nitrogen assimilation pathway. Here, we focused on the nitrogen metabolism of Rapaza viridis, a unicellular eukaryote exhibiting kleptoplasty.
Moe Maruyama +7 more
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