File:41467 2023 42924 Fig4.webp

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English: ATP synthase evolutionary scenarios.

A Overview of possible ancestral ATP synthase acquisition in LECA from the putative prokaryotic hosts; the A/V-type derived from the archaeal host, and F-type ATP synthases derived from bacterial endosymbionts.
B Evolutionary proposal supporting an F-type-like ancestral ATP synthase present pre-LUCA with subsequent divergence consistent with the split between Bacteria and Archaea and early transfers of A/V-type ATP synthases into the bacterial stem, and late HGT of F-type ATP synthases to Archaea.

C Evolutionary proposal supporting an F-type-like ancestral ATP synthase and pre-LUCA duplication and divergence of at least the head components of the F- and A/V-type subunits with subsequent loss of the F-type components along the archaeal stem.
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Source Fig. 4 of ATP synthase evolution on a cross-braced dated tree of life. In: Nature Communications, vol. 14, no. 7456 (2023). doi:10.1038/s41467-023-42924-w
Author Tara A. Mahendrarajah, Edmund R. R. Moody, Dominik Schrempf, Lénárd L. Szánthó, Nina Dombrowski, Adrián A. Davín, Davide Pisani, Philip C. J. Donoghue, Gergely J. Szöllősi, Tom A. Williams, Anja Spang
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current15:34, 30 November 2023Thumbnail for version as of 15:34, 30 November 20232,000 × 1,430 (120 KB)Ernsts (talk | contribs)Uploaded a work by Tara A. Mahendrarajah, Edmund R. R. Moody, Dominik Schrempf, Lénárd L. Szánthó, Nina Dombrowski, Adrián A. Davín, Davide Pisani, Philip C. J. Donoghue, Gergely J. Szöllősi, Tom A. Williams, Anja Spang from ''ATP synthase evolution on a cross-braced dated tree of life.'' In: ''Nature Communications'', vol. 14, no. 7456 (2023). doi:10.1038/s41467-023-42924-w with UploadWizard

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