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The CLE53–SUNN genetic pathway negatively regulates arbuscular mycorrhiza root colonization in Medicago truncatula

Plants and arbuscular mycorrhizal fungi (AMF) engage in mutually beneficial symbioses based on a reciprocal exchange of nutrients. The beneficial character of the symbiosis is maintained through a mechanism called autoregulation of mycorrhization (AOM). AOM includes root-to-shoot-to-root signaling;...

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Autores principales: Karlo, Magda, Boschiero, Clarissa, Landerslev, Katrine Gram, Blanco, Gonzalo Sancho, Wen, Jiangqi, Mysore, Kirankumar S, Dai, Xinbin, Zhao, Patrick X, de Bang, Thomas C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7410177/
https://www.ncbi.nlm.nih.gov/pubmed/32309861
http://dx.doi.org/10.1093/jxb/eraa193
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author Karlo, Magda
Boschiero, Clarissa
Landerslev, Katrine Gram
Blanco, Gonzalo Sancho
Wen, Jiangqi
Mysore, Kirankumar S
Dai, Xinbin
Zhao, Patrick X
de Bang, Thomas C
author_facet Karlo, Magda
Boschiero, Clarissa
Landerslev, Katrine Gram
Blanco, Gonzalo Sancho
Wen, Jiangqi
Mysore, Kirankumar S
Dai, Xinbin
Zhao, Patrick X
de Bang, Thomas C
author_sort Karlo, Magda
collection PubMed
description Plants and arbuscular mycorrhizal fungi (AMF) engage in mutually beneficial symbioses based on a reciprocal exchange of nutrients. The beneficial character of the symbiosis is maintained through a mechanism called autoregulation of mycorrhization (AOM). AOM includes root-to-shoot-to-root signaling; however, the molecular details of AOM are poorly understood. AOM shares many features of autoregulation of nodulation (AON) where several genes are known, including the receptor-like kinase SUPER NUMERIC NODULES (SUNN), root-to-shoot mobile CLAVATA3/ENDOSPERM SURROUNDING REGION (ESR)-RELATED (CLE) peptides, and the hydroxyproline O-arabinosyltransferase ROOT DETERMINED NODULATION1 (RDN1) required for post-translational peptide modification. In this work, CLE53 was identified to negatively regulate AMF symbiosis in a SUNN- and RDN1-dependent manner. CLE53 expression was repressed at low phosphorus, while it was induced by AMF colonization and high phosphorus. CLE53 overexpression reduced AMF colonization in a SUNN- and RDN1 dependent manner, while cle53, rdn1, and sunn mutants were more colonized than the wild type. RNA-sequencing identified 700 genes with SUNN-dependent regulation in AMF-colonized plants, providing a resource for future identification of additional AOM genes. Disruption of AOM genes in crops potentially constitutes a novel route for improving AMF-derived phosphorus uptake in agricultural systems with high phosphorus levels.
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spelling pubmed-74101772020-08-10 The CLE53–SUNN genetic pathway negatively regulates arbuscular mycorrhiza root colonization in Medicago truncatula Karlo, Magda Boschiero, Clarissa Landerslev, Katrine Gram Blanco, Gonzalo Sancho Wen, Jiangqi Mysore, Kirankumar S Dai, Xinbin Zhao, Patrick X de Bang, Thomas C J Exp Bot Research Papers Plants and arbuscular mycorrhizal fungi (AMF) engage in mutually beneficial symbioses based on a reciprocal exchange of nutrients. The beneficial character of the symbiosis is maintained through a mechanism called autoregulation of mycorrhization (AOM). AOM includes root-to-shoot-to-root signaling; however, the molecular details of AOM are poorly understood. AOM shares many features of autoregulation of nodulation (AON) where several genes are known, including the receptor-like kinase SUPER NUMERIC NODULES (SUNN), root-to-shoot mobile CLAVATA3/ENDOSPERM SURROUNDING REGION (ESR)-RELATED (CLE) peptides, and the hydroxyproline O-arabinosyltransferase ROOT DETERMINED NODULATION1 (RDN1) required for post-translational peptide modification. In this work, CLE53 was identified to negatively regulate AMF symbiosis in a SUNN- and RDN1-dependent manner. CLE53 expression was repressed at low phosphorus, while it was induced by AMF colonization and high phosphorus. CLE53 overexpression reduced AMF colonization in a SUNN- and RDN1 dependent manner, while cle53, rdn1, and sunn mutants were more colonized than the wild type. RNA-sequencing identified 700 genes with SUNN-dependent regulation in AMF-colonized plants, providing a resource for future identification of additional AOM genes. Disruption of AOM genes in crops potentially constitutes a novel route for improving AMF-derived phosphorus uptake in agricultural systems with high phosphorus levels. Oxford University Press 2020-08-06 2020-04-20 /pmc/articles/PMC7410177/ /pubmed/32309861 http://dx.doi.org/10.1093/jxb/eraa193 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Papers
Karlo, Magda
Boschiero, Clarissa
Landerslev, Katrine Gram
Blanco, Gonzalo Sancho
Wen, Jiangqi
Mysore, Kirankumar S
Dai, Xinbin
Zhao, Patrick X
de Bang, Thomas C
The CLE53–SUNN genetic pathway negatively regulates arbuscular mycorrhiza root colonization in Medicago truncatula
title The CLE53–SUNN genetic pathway negatively regulates arbuscular mycorrhiza root colonization in Medicago truncatula
title_full The CLE53–SUNN genetic pathway negatively regulates arbuscular mycorrhiza root colonization in Medicago truncatula
title_fullStr The CLE53–SUNN genetic pathway negatively regulates arbuscular mycorrhiza root colonization in Medicago truncatula
title_full_unstemmed The CLE53–SUNN genetic pathway negatively regulates arbuscular mycorrhiza root colonization in Medicago truncatula
title_short The CLE53–SUNN genetic pathway negatively regulates arbuscular mycorrhiza root colonization in Medicago truncatula
title_sort cle53–sunn genetic pathway negatively regulates arbuscular mycorrhiza root colonization in medicago truncatula
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7410177/
https://www.ncbi.nlm.nih.gov/pubmed/32309861
http://dx.doi.org/10.1093/jxb/eraa193
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