Plastid thylakoid architecture optimizes photosynthesis in diatoms
Phytoplankton and plant plastids have distinct evolutionary origins and membrane organization. Here Floriet al. show that diatom photosynthetic complexes spatially segregate into interconnected subdomains within loose thylakoid stacks enabling fast diffusion of electron carriers and efficient photos...
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Nature Portfolio
2017
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oai:doaj.org-article:dbb2f45ac7514c388c1ff45a784921852021-12-02T15:38:32ZPlastid thylakoid architecture optimizes photosynthesis in diatoms10.1038/ncomms158852041-1723https://doaj.org/article/dbb2f45ac7514c388c1ff45a784921852017-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms15885https://doaj.org/toc/2041-1723Phytoplankton and plant plastids have distinct evolutionary origins and membrane organization. Here Floriet al. show that diatom photosynthetic complexes spatially segregate into interconnected subdomains within loose thylakoid stacks enabling fast diffusion of electron carriers and efficient photosynthesisSerena FloriPierre-Henri JouneauBenjamin BailleulBenoit GalletLeandro F EstroziChristine MoriscotOlivier BastienSimona EickeAlexander SchoberCarolina Río BártulosEric MaréchalPeter G KrothDimitris PetroutsosSamuel ZeemanCécile BreytonGuy SchoehnDenis FalconetGiovanni FinazziNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-9 (2017) |
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Science Q Serena Flori Pierre-Henri Jouneau Benjamin Bailleul Benoit Gallet Leandro F Estrozi Christine Moriscot Olivier Bastien Simona Eicke Alexander Schober Carolina Río Bártulos Eric Maréchal Peter G Kroth Dimitris Petroutsos Samuel Zeeman Cécile Breyton Guy Schoehn Denis Falconet Giovanni Finazzi Plastid thylakoid architecture optimizes photosynthesis in diatoms |
description |
Phytoplankton and plant plastids have distinct evolutionary origins and membrane organization. Here Floriet al. show that diatom photosynthetic complexes spatially segregate into interconnected subdomains within loose thylakoid stacks enabling fast diffusion of electron carriers and efficient photosynthesis |
format |
article |
author |
Serena Flori Pierre-Henri Jouneau Benjamin Bailleul Benoit Gallet Leandro F Estrozi Christine Moriscot Olivier Bastien Simona Eicke Alexander Schober Carolina Río Bártulos Eric Maréchal Peter G Kroth Dimitris Petroutsos Samuel Zeeman Cécile Breyton Guy Schoehn Denis Falconet Giovanni Finazzi |
author_facet |
Serena Flori Pierre-Henri Jouneau Benjamin Bailleul Benoit Gallet Leandro F Estrozi Christine Moriscot Olivier Bastien Simona Eicke Alexander Schober Carolina Río Bártulos Eric Maréchal Peter G Kroth Dimitris Petroutsos Samuel Zeeman Cécile Breyton Guy Schoehn Denis Falconet Giovanni Finazzi |
author_sort |
Serena Flori |
title |
Plastid thylakoid architecture optimizes photosynthesis in diatoms |
title_short |
Plastid thylakoid architecture optimizes photosynthesis in diatoms |
title_full |
Plastid thylakoid architecture optimizes photosynthesis in diatoms |
title_fullStr |
Plastid thylakoid architecture optimizes photosynthesis in diatoms |
title_full_unstemmed |
Plastid thylakoid architecture optimizes photosynthesis in diatoms |
title_sort |
plastid thylakoid architecture optimizes photosynthesis in diatoms |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/dbb2f45ac7514c388c1ff45a78492185 |
work_keys_str_mv |
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