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The rhizobial type III effector ErnA confers the ability to form nodules in legumes

Several Bradyrhizobium species nodulate the leguminous plant Aeschynomene indica in a type III secretion system-dependent manner, independently of Nod factors. To date, the underlying molecular determinants involved in this symbiotic process remain unknown. To identify the rhizobial effectors involv...

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Autores principales: Teulet, Albin, Busset, Nicolas, Fardoux, Joël, Gully, Djamel, Chaintreuil, Clémence, Cartieaux, Fabienne, Jauneau, Alain, Comorge, Virginie, Okazaki, Shin, Kaneko, Takakazu, Gressent, Frédéric, Nouwen, Nico, Arrighi, Jean-François, Koebnik, Ralf, Mergaert, Peter, Deslandes, Laurent, Giraud, Eric
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6815186/
https://www.ncbi.nlm.nih.gov/pubmed/31591240
http://dx.doi.org/10.1073/pnas.1904456116
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author Teulet, Albin
Busset, Nicolas
Fardoux, Joël
Gully, Djamel
Chaintreuil, Clémence
Cartieaux, Fabienne
Jauneau, Alain
Comorge, Virginie
Okazaki, Shin
Kaneko, Takakazu
Gressent, Frédéric
Nouwen, Nico
Arrighi, Jean-François
Koebnik, Ralf
Mergaert, Peter
Deslandes, Laurent
Giraud, Eric
author_facet Teulet, Albin
Busset, Nicolas
Fardoux, Joël
Gully, Djamel
Chaintreuil, Clémence
Cartieaux, Fabienne
Jauneau, Alain
Comorge, Virginie
Okazaki, Shin
Kaneko, Takakazu
Gressent, Frédéric
Nouwen, Nico
Arrighi, Jean-François
Koebnik, Ralf
Mergaert, Peter
Deslandes, Laurent
Giraud, Eric
author_sort Teulet, Albin
collection PubMed
description Several Bradyrhizobium species nodulate the leguminous plant Aeschynomene indica in a type III secretion system-dependent manner, independently of Nod factors. To date, the underlying molecular determinants involved in this symbiotic process remain unknown. To identify the rhizobial effectors involved in nodulation, we mutated 23 out of the 27 effector genes predicted in Bradyrhizobium strain ORS3257. The mutation of nopAO increased nodulation and nitrogenase activity, whereas mutation of 5 other effector genes led to various symbiotic defects. The nopM1 and nopP1 mutants induced a reduced number of nodules, some of which displayed large necrotic zones. The nopT and nopAB mutants induced uninfected nodules, and a mutant in a yet-undescribed effector gene lost the capacity for nodule formation. This effector gene, widely conserved among bradyrhizobia, was named ernA for “effector required for nodulation-A.” Remarkably, expressing ernA in a strain unable to nodulate A. indica conferred nodulation ability. Upon its delivery by Pseudomonas fluorescens into plant cells, ErnA was specifically targeted to the nucleus, and a fluorescence resonance energy transfer–fluorescence lifetime imaging microscopy approach supports the possibility that ErnA binds nucleic acids in the plant nuclei. Ectopic expression of ernA in A. indica roots activated organogenesis of root- and nodule-like structures. Collectively, this study unravels the symbiotic functions of rhizobial type III effectors playing distinct and complementary roles in suppression of host immune functions, infection, and nodule organogenesis, and suggests that ErnA triggers organ development in plants by a mechanism that remains to be elucidated.
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spelling pubmed-68151862019-10-30 The rhizobial type III effector ErnA confers the ability to form nodules in legumes Teulet, Albin Busset, Nicolas Fardoux, Joël Gully, Djamel Chaintreuil, Clémence Cartieaux, Fabienne Jauneau, Alain Comorge, Virginie Okazaki, Shin Kaneko, Takakazu Gressent, Frédéric Nouwen, Nico Arrighi, Jean-François Koebnik, Ralf Mergaert, Peter Deslandes, Laurent Giraud, Eric Proc Natl Acad Sci U S A PNAS Plus Several Bradyrhizobium species nodulate the leguminous plant Aeschynomene indica in a type III secretion system-dependent manner, independently of Nod factors. To date, the underlying molecular determinants involved in this symbiotic process remain unknown. To identify the rhizobial effectors involved in nodulation, we mutated 23 out of the 27 effector genes predicted in Bradyrhizobium strain ORS3257. The mutation of nopAO increased nodulation and nitrogenase activity, whereas mutation of 5 other effector genes led to various symbiotic defects. The nopM1 and nopP1 mutants induced a reduced number of nodules, some of which displayed large necrotic zones. The nopT and nopAB mutants induced uninfected nodules, and a mutant in a yet-undescribed effector gene lost the capacity for nodule formation. This effector gene, widely conserved among bradyrhizobia, was named ernA for “effector required for nodulation-A.” Remarkably, expressing ernA in a strain unable to nodulate A. indica conferred nodulation ability. Upon its delivery by Pseudomonas fluorescens into plant cells, ErnA was specifically targeted to the nucleus, and a fluorescence resonance energy transfer–fluorescence lifetime imaging microscopy approach supports the possibility that ErnA binds nucleic acids in the plant nuclei. Ectopic expression of ernA in A. indica roots activated organogenesis of root- and nodule-like structures. Collectively, this study unravels the symbiotic functions of rhizobial type III effectors playing distinct and complementary roles in suppression of host immune functions, infection, and nodule organogenesis, and suggests that ErnA triggers organ development in plants by a mechanism that remains to be elucidated. National Academy of Sciences 2019-10-22 2019-10-07 /pmc/articles/PMC6815186/ /pubmed/31591240 http://dx.doi.org/10.1073/pnas.1904456116 Text en Copyright © 2019 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ 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
Teulet, Albin
Busset, Nicolas
Fardoux, Joël
Gully, Djamel
Chaintreuil, Clémence
Cartieaux, Fabienne
Jauneau, Alain
Comorge, Virginie
Okazaki, Shin
Kaneko, Takakazu
Gressent, Frédéric
Nouwen, Nico
Arrighi, Jean-François
Koebnik, Ralf
Mergaert, Peter
Deslandes, Laurent
Giraud, Eric
The rhizobial type III effector ErnA confers the ability to form nodules in legumes
title The rhizobial type III effector ErnA confers the ability to form nodules in legumes
title_full The rhizobial type III effector ErnA confers the ability to form nodules in legumes
title_fullStr The rhizobial type III effector ErnA confers the ability to form nodules in legumes
title_full_unstemmed The rhizobial type III effector ErnA confers the ability to form nodules in legumes
title_short The rhizobial type III effector ErnA confers the ability to form nodules in legumes
title_sort rhizobial type iii effector erna confers the ability to form nodules in legumes
topic PNAS Plus
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6815186/
https://www.ncbi.nlm.nih.gov/pubmed/31591240
http://dx.doi.org/10.1073/pnas.1904456116
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