Morphological bases of phytoplankton energy management and physiological responses unveiled by 3D subcellular imaging
Phytoplankton account for a large proportion of global primary production and comprise a number of phylogenetically distinct lineages. Here, Uwizeye et al. use FIB-SEM to study ultrastructural plasticity of 7 distinct taxa and describe how subcellular organisation is linked to energy metabolism.
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Nature Portfolio
2021
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oai:doaj.org-article:b30d8ca1bab04c61924c168db271f06e2021-12-02T14:03:50ZMorphological bases of phytoplankton energy management and physiological responses unveiled by 3D subcellular imaging10.1038/s41467-021-21314-02041-1723https://doaj.org/article/b30d8ca1bab04c61924c168db271f06e2021-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21314-0https://doaj.org/toc/2041-1723Phytoplankton account for a large proportion of global primary production and comprise a number of phylogenetically distinct lineages. Here, Uwizeye et al. use FIB-SEM to study ultrastructural plasticity of 7 distinct taxa and describe how subcellular organisation is linked to energy metabolism.Clarisse UwizeyeJohan DecellePierre-Henri JouneauSerena FloriBenoit GalletJean-Baptiste KeckDavide Dal BoChristine MoriscotClaire SeydouxFabien ChevalierNicole L. SchieberRachel TemplinGuillaume AllorentFlorence CourtoisGilles CurienYannick SchwabGuy SchoehnSamuel C. ZeemanDenis FalconetGiovanni FinazziNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-12 (2021) |
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Science Q Clarisse Uwizeye Johan Decelle Pierre-Henri Jouneau Serena Flori Benoit Gallet Jean-Baptiste Keck Davide Dal Bo Christine Moriscot Claire Seydoux Fabien Chevalier Nicole L. Schieber Rachel Templin Guillaume Allorent Florence Courtois Gilles Curien Yannick Schwab Guy Schoehn Samuel C. Zeeman Denis Falconet Giovanni Finazzi Morphological bases of phytoplankton energy management and physiological responses unveiled by 3D subcellular imaging |
description |
Phytoplankton account for a large proportion of global primary production and comprise a number of phylogenetically distinct lineages. Here, Uwizeye et al. use FIB-SEM to study ultrastructural plasticity of 7 distinct taxa and describe how subcellular organisation is linked to energy metabolism. |
format |
article |
author |
Clarisse Uwizeye Johan Decelle Pierre-Henri Jouneau Serena Flori Benoit Gallet Jean-Baptiste Keck Davide Dal Bo Christine Moriscot Claire Seydoux Fabien Chevalier Nicole L. Schieber Rachel Templin Guillaume Allorent Florence Courtois Gilles Curien Yannick Schwab Guy Schoehn Samuel C. Zeeman Denis Falconet Giovanni Finazzi |
author_facet |
Clarisse Uwizeye Johan Decelle Pierre-Henri Jouneau Serena Flori Benoit Gallet Jean-Baptiste Keck Davide Dal Bo Christine Moriscot Claire Seydoux Fabien Chevalier Nicole L. Schieber Rachel Templin Guillaume Allorent Florence Courtois Gilles Curien Yannick Schwab Guy Schoehn Samuel C. Zeeman Denis Falconet Giovanni Finazzi |
author_sort |
Clarisse Uwizeye |
title |
Morphological bases of phytoplankton energy management and physiological responses unveiled by 3D subcellular imaging |
title_short |
Morphological bases of phytoplankton energy management and physiological responses unveiled by 3D subcellular imaging |
title_full |
Morphological bases of phytoplankton energy management and physiological responses unveiled by 3D subcellular imaging |
title_fullStr |
Morphological bases of phytoplankton energy management and physiological responses unveiled by 3D subcellular imaging |
title_full_unstemmed |
Morphological bases of phytoplankton energy management and physiological responses unveiled by 3D subcellular imaging |
title_sort |
morphological bases of phytoplankton energy management and physiological responses unveiled by 3d subcellular imaging |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/b30d8ca1bab04c61924c168db271f06e |
work_keys_str_mv |
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