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A plant chitinase controls cortical infection thread progression and nitrogen-fixing symbiosis

Morphogens provide positional information and their concentration is key to the organized development of multicellular organisms. Nitrogen-fixing root nodules are unique organs induced by Nod factor-producing bacteria. Localized production of Nod factors establishes a developmental field within the...

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Autores principales: Malolepszy, Anna, Kelly, Simon, Sørensen, Kasper Kildegaard, James, Euan Kevin, Kalisch, Christina, Bozsoki, Zoltan, Panting, Michael, Andersen, Stig U, Sato, Shusei, Tao, Ke, Jensen, Dorthe Bødker, Vinther, Maria, de Jong, Noor, Madsen, Lene Heegaard, Umehara, Yosuke, Gysel, Kira, Berentsen, Mette U, Blaise, Mickael, Jensen, Knud Jørgen, Thygesen, Mikkel B, Sandal, Niels, Andersen, Kasper Røjkjær, Radutoiu, Simona
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6192697/
https://www.ncbi.nlm.nih.gov/pubmed/30284535
http://dx.doi.org/10.7554/eLife.38874
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author Malolepszy, Anna
Kelly, Simon
Sørensen, Kasper Kildegaard
James, Euan Kevin
Kalisch, Christina
Bozsoki, Zoltan
Panting, Michael
Andersen, Stig U
Sato, Shusei
Tao, Ke
Jensen, Dorthe Bødker
Vinther, Maria
de Jong, Noor
Madsen, Lene Heegaard
Umehara, Yosuke
Gysel, Kira
Berentsen, Mette U
Blaise, Mickael
Jensen, Knud Jørgen
Thygesen, Mikkel B
Sandal, Niels
Andersen, Kasper Røjkjær
Radutoiu, Simona
author_facet Malolepszy, Anna
Kelly, Simon
Sørensen, Kasper Kildegaard
James, Euan Kevin
Kalisch, Christina
Bozsoki, Zoltan
Panting, Michael
Andersen, Stig U
Sato, Shusei
Tao, Ke
Jensen, Dorthe Bødker
Vinther, Maria
de Jong, Noor
Madsen, Lene Heegaard
Umehara, Yosuke
Gysel, Kira
Berentsen, Mette U
Blaise, Mickael
Jensen, Knud Jørgen
Thygesen, Mikkel B
Sandal, Niels
Andersen, Kasper Røjkjær
Radutoiu, Simona
author_sort Malolepszy, Anna
collection PubMed
description Morphogens provide positional information and their concentration is key to the organized development of multicellular organisms. Nitrogen-fixing root nodules are unique organs induced by Nod factor-producing bacteria. Localized production of Nod factors establishes a developmental field within the root where plant cells are reprogrammed to form infection threads and primordia. We found that regulation of Nod factor levels by Lotus japonicus is required for the formation of nitrogen-fixing organs, determining the fate of this induced developmental program. Our analysis of plant and bacterial mutants shows that a host chitinase modulates Nod factor levels possibly in a structure-dependent manner. In Lotus, this is required for maintaining Nod factor signalling in parallel with the elongation of infection threads within the nodule cortex, while root hair infection and primordia formation are not influenced. Our study shows that infected nodules require balanced levels of Nod factors for completing their transition to functional, nitrogen-fixing organs.
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spelling pubmed-61926972018-10-21 A plant chitinase controls cortical infection thread progression and nitrogen-fixing symbiosis Malolepszy, Anna Kelly, Simon Sørensen, Kasper Kildegaard James, Euan Kevin Kalisch, Christina Bozsoki, Zoltan Panting, Michael Andersen, Stig U Sato, Shusei Tao, Ke Jensen, Dorthe Bødker Vinther, Maria de Jong, Noor Madsen, Lene Heegaard Umehara, Yosuke Gysel, Kira Berentsen, Mette U Blaise, Mickael Jensen, Knud Jørgen Thygesen, Mikkel B Sandal, Niels Andersen, Kasper Røjkjær Radutoiu, Simona eLife Plant Biology Morphogens provide positional information and their concentration is key to the organized development of multicellular organisms. Nitrogen-fixing root nodules are unique organs induced by Nod factor-producing bacteria. Localized production of Nod factors establishes a developmental field within the root where plant cells are reprogrammed to form infection threads and primordia. We found that regulation of Nod factor levels by Lotus japonicus is required for the formation of nitrogen-fixing organs, determining the fate of this induced developmental program. Our analysis of plant and bacterial mutants shows that a host chitinase modulates Nod factor levels possibly in a structure-dependent manner. In Lotus, this is required for maintaining Nod factor signalling in parallel with the elongation of infection threads within the nodule cortex, while root hair infection and primordia formation are not influenced. Our study shows that infected nodules require balanced levels of Nod factors for completing their transition to functional, nitrogen-fixing organs. eLife Sciences Publications, Ltd 2018-10-04 /pmc/articles/PMC6192697/ /pubmed/30284535 http://dx.doi.org/10.7554/eLife.38874 Text en © 2018, Malolepszy et al http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Plant Biology
Malolepszy, Anna
Kelly, Simon
Sørensen, Kasper Kildegaard
James, Euan Kevin
Kalisch, Christina
Bozsoki, Zoltan
Panting, Michael
Andersen, Stig U
Sato, Shusei
Tao, Ke
Jensen, Dorthe Bødker
Vinther, Maria
de Jong, Noor
Madsen, Lene Heegaard
Umehara, Yosuke
Gysel, Kira
Berentsen, Mette U
Blaise, Mickael
Jensen, Knud Jørgen
Thygesen, Mikkel B
Sandal, Niels
Andersen, Kasper Røjkjær
Radutoiu, Simona
A plant chitinase controls cortical infection thread progression and nitrogen-fixing symbiosis
title A plant chitinase controls cortical infection thread progression and nitrogen-fixing symbiosis
title_full A plant chitinase controls cortical infection thread progression and nitrogen-fixing symbiosis
title_fullStr A plant chitinase controls cortical infection thread progression and nitrogen-fixing symbiosis
title_full_unstemmed A plant chitinase controls cortical infection thread progression and nitrogen-fixing symbiosis
title_short A plant chitinase controls cortical infection thread progression and nitrogen-fixing symbiosis
title_sort plant chitinase controls cortical infection thread progression and nitrogen-fixing symbiosis
topic Plant Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6192697/
https://www.ncbi.nlm.nih.gov/pubmed/30284535
http://dx.doi.org/10.7554/eLife.38874
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