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The innovation of the symbiosome has enhanced the evolutionary stability of nitrogen fixation in legumes

Nitrogen‐fixing symbiosis is globally important in ecosystem functioning and agriculture, yet the evolutionary history of nodulation remains the focus of considerable debate. Recent evidence suggesting a single origin of nodulation followed by massive parallel evolutionary losses raises questions ab...

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Autores principales: de Faria, Sergio M., Ringelberg, Jens J., Gross, Eduardo, Koenen, Erik J. M., Cardoso, Domingos, Ametsitsi, George K. D., Akomatey, John, Maluk, Marta, Tak, Nisha, Gehlot, Hukam S., Wright, Kathryn M., Teaumroong, Neung, Songwattana, Pongpan, de Lima, Haroldo C., Prin, Yves, Zartman, Charles E., Sprent, Janet I., Ardley, Julie, Hughes, Colin E., James, Euan K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9541511/
https://www.ncbi.nlm.nih.gov/pubmed/35901264
http://dx.doi.org/10.1111/nph.18321
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author de Faria, Sergio M.
Ringelberg, Jens J.
Gross, Eduardo
Koenen, Erik J. M.
Cardoso, Domingos
Ametsitsi, George K. D.
Akomatey, John
Maluk, Marta
Tak, Nisha
Gehlot, Hukam S.
Wright, Kathryn M.
Teaumroong, Neung
Songwattana, Pongpan
de Lima, Haroldo C.
Prin, Yves
Zartman, Charles E.
Sprent, Janet I.
Ardley, Julie
Hughes, Colin E.
James, Euan K.
author_facet de Faria, Sergio M.
Ringelberg, Jens J.
Gross, Eduardo
Koenen, Erik J. M.
Cardoso, Domingos
Ametsitsi, George K. D.
Akomatey, John
Maluk, Marta
Tak, Nisha
Gehlot, Hukam S.
Wright, Kathryn M.
Teaumroong, Neung
Songwattana, Pongpan
de Lima, Haroldo C.
Prin, Yves
Zartman, Charles E.
Sprent, Janet I.
Ardley, Julie
Hughes, Colin E.
James, Euan K.
author_sort de Faria, Sergio M.
collection PubMed
description Nitrogen‐fixing symbiosis is globally important in ecosystem functioning and agriculture, yet the evolutionary history of nodulation remains the focus of considerable debate. Recent evidence suggesting a single origin of nodulation followed by massive parallel evolutionary losses raises questions about why a few lineages in the N(2)‐fixing clade retained nodulation and diversified as stable nodulators, while most did not. Within legumes, nodulation is restricted to the two most diverse subfamilies, Papilionoideae and Caesalpinioideae, which show stable retention of nodulation across their core clades. We characterize two nodule anatomy types across 128 species in 56 of the 152 genera of the legume subfamily Caesalpinioideae: fixation thread nodules (FTs), where nitrogen‐fixing bacteroids are retained within the apoplast in modified infection threads, and symbiosomes, where rhizobia are symplastically internalized in the host cell cytoplasm within membrane‐bound symbiosomes (SYMs). Using a robust phylogenomic tree based on 997 genes from 147 Caesalpinioideae genera, we show that losses of nodulation are more prevalent in lineages with FTs than those with SYMs. We propose that evolution of the symbiosome allows for a more intimate and enduring symbiosis through tighter compartmentalization of their rhizobial microsymbionts, resulting in greater evolutionary stability of nodulation across this species‐rich pantropical legume clade.
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spelling pubmed-95415112022-10-14 The innovation of the symbiosome has enhanced the evolutionary stability of nitrogen fixation in legumes de Faria, Sergio M. Ringelberg, Jens J. Gross, Eduardo Koenen, Erik J. M. Cardoso, Domingos Ametsitsi, George K. D. Akomatey, John Maluk, Marta Tak, Nisha Gehlot, Hukam S. Wright, Kathryn M. Teaumroong, Neung Songwattana, Pongpan de Lima, Haroldo C. Prin, Yves Zartman, Charles E. Sprent, Janet I. Ardley, Julie Hughes, Colin E. James, Euan K. New Phytol Research Nitrogen‐fixing symbiosis is globally important in ecosystem functioning and agriculture, yet the evolutionary history of nodulation remains the focus of considerable debate. Recent evidence suggesting a single origin of nodulation followed by massive parallel evolutionary losses raises questions about why a few lineages in the N(2)‐fixing clade retained nodulation and diversified as stable nodulators, while most did not. Within legumes, nodulation is restricted to the two most diverse subfamilies, Papilionoideae and Caesalpinioideae, which show stable retention of nodulation across their core clades. We characterize two nodule anatomy types across 128 species in 56 of the 152 genera of the legume subfamily Caesalpinioideae: fixation thread nodules (FTs), where nitrogen‐fixing bacteroids are retained within the apoplast in modified infection threads, and symbiosomes, where rhizobia are symplastically internalized in the host cell cytoplasm within membrane‐bound symbiosomes (SYMs). Using a robust phylogenomic tree based on 997 genes from 147 Caesalpinioideae genera, we show that losses of nodulation are more prevalent in lineages with FTs than those with SYMs. We propose that evolution of the symbiosome allows for a more intimate and enduring symbiosis through tighter compartmentalization of their rhizobial microsymbionts, resulting in greater evolutionary stability of nodulation across this species‐rich pantropical legume clade. John Wiley and Sons Inc. 2022-07-28 2022-09 /pmc/articles/PMC9541511/ /pubmed/35901264 http://dx.doi.org/10.1111/nph.18321 Text en © 2022 The Authors. New Phytologist © 2022 New Phytologist Foundation. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
de Faria, Sergio M.
Ringelberg, Jens J.
Gross, Eduardo
Koenen, Erik J. M.
Cardoso, Domingos
Ametsitsi, George K. D.
Akomatey, John
Maluk, Marta
Tak, Nisha
Gehlot, Hukam S.
Wright, Kathryn M.
Teaumroong, Neung
Songwattana, Pongpan
de Lima, Haroldo C.
Prin, Yves
Zartman, Charles E.
Sprent, Janet I.
Ardley, Julie
Hughes, Colin E.
James, Euan K.
The innovation of the symbiosome has enhanced the evolutionary stability of nitrogen fixation in legumes
title The innovation of the symbiosome has enhanced the evolutionary stability of nitrogen fixation in legumes
title_full The innovation of the symbiosome has enhanced the evolutionary stability of nitrogen fixation in legumes
title_fullStr The innovation of the symbiosome has enhanced the evolutionary stability of nitrogen fixation in legumes
title_full_unstemmed The innovation of the symbiosome has enhanced the evolutionary stability of nitrogen fixation in legumes
title_short The innovation of the symbiosome has enhanced the evolutionary stability of nitrogen fixation in legumes
title_sort innovation of the symbiosome has enhanced the evolutionary stability of nitrogen fixation in legumes
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9541511/
https://www.ncbi.nlm.nih.gov/pubmed/35901264
http://dx.doi.org/10.1111/nph.18321
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