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Comparative genomics of the nonlegume Parasponia reveals insights into evolution of nitrogen-fixing rhizobium symbioses

Nodules harboring nitrogen-fixing rhizobia are a well-known trait of legumes, but nodules also occur in other plant lineages, with rhizobia or the actinomycete Frankia as microsymbiont. It is generally assumed that nodulation evolved independently multiple times. However, molecular-genetic support f...

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Autores principales: van Velzen, Robin, Holmer, Rens, Bu, Fengjiao, Rutten, Luuk, van Zeijl, Arjan, Liu, Wei, Santuari, Luca, Cao, Qingqin, Sharma, Trupti, Shen, Defeng, Roswanjaya, Yuda, Wardhani, Titis A. K., Kalhor, Maryam Seifi, Jansen, Joelle, van den Hoogen, Johan, Güngör, Berivan, Hartog, Marijke, Hontelez, Jan, Verver, Jan, Yang, Wei-Cai, Schijlen, Elio, Repin, Rimi, Schilthuizen, Menno, Schranz, M. Eric, Heidstra, Renze, Miyata, Kana, Fedorova, Elena, Kohlen, Wouter, Bisseling, Ton, Smit, Sandra, Geurts, Rene
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5960304/
https://www.ncbi.nlm.nih.gov/pubmed/29717040
http://dx.doi.org/10.1073/pnas.1721395115
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author van Velzen, Robin
Holmer, Rens
Bu, Fengjiao
Rutten, Luuk
van Zeijl, Arjan
Liu, Wei
Santuari, Luca
Cao, Qingqin
Sharma, Trupti
Shen, Defeng
Roswanjaya, Yuda
Wardhani, Titis A. K.
Kalhor, Maryam Seifi
Jansen, Joelle
van den Hoogen, Johan
Güngör, Berivan
Hartog, Marijke
Hontelez, Jan
Verver, Jan
Yang, Wei-Cai
Schijlen, Elio
Repin, Rimi
Schilthuizen, Menno
Schranz, M. Eric
Heidstra, Renze
Miyata, Kana
Fedorova, Elena
Kohlen, Wouter
Bisseling, Ton
Smit, Sandra
Geurts, Rene
author_facet van Velzen, Robin
Holmer, Rens
Bu, Fengjiao
Rutten, Luuk
van Zeijl, Arjan
Liu, Wei
Santuari, Luca
Cao, Qingqin
Sharma, Trupti
Shen, Defeng
Roswanjaya, Yuda
Wardhani, Titis A. K.
Kalhor, Maryam Seifi
Jansen, Joelle
van den Hoogen, Johan
Güngör, Berivan
Hartog, Marijke
Hontelez, Jan
Verver, Jan
Yang, Wei-Cai
Schijlen, Elio
Repin, Rimi
Schilthuizen, Menno
Schranz, M. Eric
Heidstra, Renze
Miyata, Kana
Fedorova, Elena
Kohlen, Wouter
Bisseling, Ton
Smit, Sandra
Geurts, Rene
author_sort van Velzen, Robin
collection PubMed
description Nodules harboring nitrogen-fixing rhizobia are a well-known trait of legumes, but nodules also occur in other plant lineages, with rhizobia or the actinomycete Frankia as microsymbiont. It is generally assumed that nodulation evolved independently multiple times. However, molecular-genetic support for this hypothesis is lacking, as the genetic changes underlying nodule evolution remain elusive. We conducted genetic and comparative genomics studies by using Parasponia species (Cannabaceae), the only nonlegumes that can establish nitrogen-fixing nodules with rhizobium. Intergeneric crosses between Parasponia andersonii and its nonnodulating relative Trema tomentosa demonstrated that nodule organogenesis, but not intracellular infection, is a dominant genetic trait. Comparative transcriptomics of P. andersonii and the legume Medicago truncatula revealed utilization of at least 290 orthologous symbiosis genes in nodules. Among these are key genes that, in legumes, are essential for nodulation, including NODULE INCEPTION (NIN) and RHIZOBIUM-DIRECTED POLAR GROWTH (RPG). Comparative analysis of genomes from three Parasponia species and related nonnodulating plant species show evidence of parallel loss in nonnodulating species of putative orthologs of NIN, RPG, and NOD FACTOR PERCEPTION. Parallel loss of these symbiosis genes indicates that these nonnodulating lineages lost the potential to nodulate. Taken together, our results challenge the view that nodulation evolved in parallel and raises the possibility that nodulation originated ∼100 Mya in a common ancestor of all nodulating plant species, but was subsequently lost in many descendant lineages. This will have profound implications for translational approaches aimed at engineering nitrogen-fixing nodules in crop plants.
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spelling pubmed-59603042018-05-21 Comparative genomics of the nonlegume Parasponia reveals insights into evolution of nitrogen-fixing rhizobium symbioses van Velzen, Robin Holmer, Rens Bu, Fengjiao Rutten, Luuk van Zeijl, Arjan Liu, Wei Santuari, Luca Cao, Qingqin Sharma, Trupti Shen, Defeng Roswanjaya, Yuda Wardhani, Titis A. K. Kalhor, Maryam Seifi Jansen, Joelle van den Hoogen, Johan Güngör, Berivan Hartog, Marijke Hontelez, Jan Verver, Jan Yang, Wei-Cai Schijlen, Elio Repin, Rimi Schilthuizen, Menno Schranz, M. Eric Heidstra, Renze Miyata, Kana Fedorova, Elena Kohlen, Wouter Bisseling, Ton Smit, Sandra Geurts, Rene Proc Natl Acad Sci U S A PNAS Plus Nodules harboring nitrogen-fixing rhizobia are a well-known trait of legumes, but nodules also occur in other plant lineages, with rhizobia or the actinomycete Frankia as microsymbiont. It is generally assumed that nodulation evolved independently multiple times. However, molecular-genetic support for this hypothesis is lacking, as the genetic changes underlying nodule evolution remain elusive. We conducted genetic and comparative genomics studies by using Parasponia species (Cannabaceae), the only nonlegumes that can establish nitrogen-fixing nodules with rhizobium. Intergeneric crosses between Parasponia andersonii and its nonnodulating relative Trema tomentosa demonstrated that nodule organogenesis, but not intracellular infection, is a dominant genetic trait. Comparative transcriptomics of P. andersonii and the legume Medicago truncatula revealed utilization of at least 290 orthologous symbiosis genes in nodules. Among these are key genes that, in legumes, are essential for nodulation, including NODULE INCEPTION (NIN) and RHIZOBIUM-DIRECTED POLAR GROWTH (RPG). Comparative analysis of genomes from three Parasponia species and related nonnodulating plant species show evidence of parallel loss in nonnodulating species of putative orthologs of NIN, RPG, and NOD FACTOR PERCEPTION. Parallel loss of these symbiosis genes indicates that these nonnodulating lineages lost the potential to nodulate. Taken together, our results challenge the view that nodulation evolved in parallel and raises the possibility that nodulation originated ∼100 Mya in a common ancestor of all nodulating plant species, but was subsequently lost in many descendant lineages. This will have profound implications for translational approaches aimed at engineering nitrogen-fixing nodules in crop plants. National Academy of Sciences 2018-05-15 2018-05-01 /pmc/articles/PMC5960304/ /pubmed/29717040 http://dx.doi.org/10.1073/pnas.1721395115 Text en Copyright © 2018 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle PNAS Plus
van Velzen, Robin
Holmer, Rens
Bu, Fengjiao
Rutten, Luuk
van Zeijl, Arjan
Liu, Wei
Santuari, Luca
Cao, Qingqin
Sharma, Trupti
Shen, Defeng
Roswanjaya, Yuda
Wardhani, Titis A. K.
Kalhor, Maryam Seifi
Jansen, Joelle
van den Hoogen, Johan
Güngör, Berivan
Hartog, Marijke
Hontelez, Jan
Verver, Jan
Yang, Wei-Cai
Schijlen, Elio
Repin, Rimi
Schilthuizen, Menno
Schranz, M. Eric
Heidstra, Renze
Miyata, Kana
Fedorova, Elena
Kohlen, Wouter
Bisseling, Ton
Smit, Sandra
Geurts, Rene
Comparative genomics of the nonlegume Parasponia reveals insights into evolution of nitrogen-fixing rhizobium symbioses
title Comparative genomics of the nonlegume Parasponia reveals insights into evolution of nitrogen-fixing rhizobium symbioses
title_full Comparative genomics of the nonlegume Parasponia reveals insights into evolution of nitrogen-fixing rhizobium symbioses
title_fullStr Comparative genomics of the nonlegume Parasponia reveals insights into evolution of nitrogen-fixing rhizobium symbioses
title_full_unstemmed Comparative genomics of the nonlegume Parasponia reveals insights into evolution of nitrogen-fixing rhizobium symbioses
title_short Comparative genomics of the nonlegume Parasponia reveals insights into evolution of nitrogen-fixing rhizobium symbioses
title_sort comparative genomics of the nonlegume parasponia reveals insights into evolution of nitrogen-fixing rhizobium symbioses
topic PNAS Plus
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5960304/
https://www.ncbi.nlm.nih.gov/pubmed/29717040
http://dx.doi.org/10.1073/pnas.1721395115
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