Abg4102.F3.large
![Image of Bacteria](https://beta-repo.eol.org/data/media/db/19/aa/509.5f6d31c72a65715a10308c9f66c31301.580x360.jpg)
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Summary[edit] Description: English: Inferred/Predicted physiology and energy metabolism of the purple endosymbiont “Ca. Thiodictyon intracellulare” (Chromatiales > Chromatiaceae) of Pseudoblepharisma tenue (Heterotrichea > Blepharismidae). Protein complexes that are part or contribute to the photosynthetic electron transport chain (purple), micro-aerobic respiration (orange), and fermentation (blue). Metabolite transporters are shown in green. Sources of nitrogen and carbon/electrons and potential photosynthate are shown in rounded rectangles. Date: 11 June 2021. Source: Fig. 3 at https://advances.sciencemag.org/content/7/24/eabg4102 A microbial eukaryote with a unique combination of purple bacteria and green algae as endosymbionts. In: Science Advances Vol. 7, no. 24, eabg4102, doi:10.1126/sciadv.abg4102 . Author: Sergio A. Muñoz-Gómez, Martin Kreutz, Sebastian Hess. Other versions: .
Included On The Following Pages:
- Life
- Cellular
- Bacteria
- Proteobacteria (Purple Bacteria & relatives)
- Gammaproteobacteria
- Chromatiales (purple sulfur bacteria and relatives)
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- Sergio A. Muñoz-Gómez, Martin Kreutz, Sebastian Hess
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- Sergio A. Muñoz-Gómez, Martin Kreutz, Sebastian Hess
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- Fig. 3 at https://advances.sciencemag.org/content/7/24/eabg4102 A microbial eukaryote with a unique combination of purple bacteria and green algae as endosymbionts. In: Science Advances Vol. 7, no. 24, eabg4102, doi:10.1126/sciadv.abg4102
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