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A Minimal Genetic Passkey to Unlock Many Legume Doors to Root Nodulation by Rhizobia

In legume crops, formation of developmentally mature nodules is a prerequisite for efficient nitrogen fixation by populations of rhizobial bacteroids established inside nodule cells. Development of root nodules, and concomitant microbial colonization of plant cells, are constrained by sets of recogn...

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Autores principales: Unay, Jovelyn, Perret, Xavier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7290934/
https://www.ncbi.nlm.nih.gov/pubmed/32392829
http://dx.doi.org/10.3390/genes11050521
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author Unay, Jovelyn
Perret, Xavier
author_facet Unay, Jovelyn
Perret, Xavier
author_sort Unay, Jovelyn
collection PubMed
description In legume crops, formation of developmentally mature nodules is a prerequisite for efficient nitrogen fixation by populations of rhizobial bacteroids established inside nodule cells. Development of root nodules, and concomitant microbial colonization of plant cells, are constrained by sets of recognition signals exchanged by infecting rhizobia and their legume hosts, with much of the specificity of symbiotic interactions being determined by the flavonoid cocktails released by legume roots and the strain-specific nodulation factors (NFs) secreted by rhizobia. Hence, much of Sinorhizobium fredii strain NGR234 symbiotic promiscuity was thought to stem from a family of >80 structurally diverse NFs and associated nodulation keys in the form of secreted effector proteins and rhamnose-rich surface polysaccharides. Here, we show instead that a mini-symbiotic plasmid (pMiniSym2) carrying only the nodABCIJ, nodS and nodD1 genes of NGR234 conferred promiscuous nodulation to ANU265, a derivative strain cured of the large symbiotic plasmid pNGR234a. The ANU265::pMiniSym2 transconjugant triggered nodulation responses on 12 of the 22 legumes we tested. On roots of Macroptilium atropurpureum, Leucaena leucocephala and Vigna unguiculata, ANU265::pMiniSym2 formed mature-like nodule and successfully infected nodule cells. While cowpea and siratro responded to nodule colonization with defense responses that eventually eliminated bacteria, L. leucocephala formed leghemoglobin-containing mature-like nodules inside which the pMiniSym2 transconjugant established persistent intracellular colonies. These data show seven nodulation genes of NGR234 suffice to trigger nodule formation on roots of many hosts and to establish chronic infections in Leucaena cells.
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spelling pubmed-72909342020-06-19 A Minimal Genetic Passkey to Unlock Many Legume Doors to Root Nodulation by Rhizobia Unay, Jovelyn Perret, Xavier Genes (Basel) Article In legume crops, formation of developmentally mature nodules is a prerequisite for efficient nitrogen fixation by populations of rhizobial bacteroids established inside nodule cells. Development of root nodules, and concomitant microbial colonization of plant cells, are constrained by sets of recognition signals exchanged by infecting rhizobia and their legume hosts, with much of the specificity of symbiotic interactions being determined by the flavonoid cocktails released by legume roots and the strain-specific nodulation factors (NFs) secreted by rhizobia. Hence, much of Sinorhizobium fredii strain NGR234 symbiotic promiscuity was thought to stem from a family of >80 structurally diverse NFs and associated nodulation keys in the form of secreted effector proteins and rhamnose-rich surface polysaccharides. Here, we show instead that a mini-symbiotic plasmid (pMiniSym2) carrying only the nodABCIJ, nodS and nodD1 genes of NGR234 conferred promiscuous nodulation to ANU265, a derivative strain cured of the large symbiotic plasmid pNGR234a. The ANU265::pMiniSym2 transconjugant triggered nodulation responses on 12 of the 22 legumes we tested. On roots of Macroptilium atropurpureum, Leucaena leucocephala and Vigna unguiculata, ANU265::pMiniSym2 formed mature-like nodule and successfully infected nodule cells. While cowpea and siratro responded to nodule colonization with defense responses that eventually eliminated bacteria, L. leucocephala formed leghemoglobin-containing mature-like nodules inside which the pMiniSym2 transconjugant established persistent intracellular colonies. These data show seven nodulation genes of NGR234 suffice to trigger nodule formation on roots of many hosts and to establish chronic infections in Leucaena cells. MDPI 2020-05-07 /pmc/articles/PMC7290934/ /pubmed/32392829 http://dx.doi.org/10.3390/genes11050521 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Unay, Jovelyn
Perret, Xavier
A Minimal Genetic Passkey to Unlock Many Legume Doors to Root Nodulation by Rhizobia
title A Minimal Genetic Passkey to Unlock Many Legume Doors to Root Nodulation by Rhizobia
title_full A Minimal Genetic Passkey to Unlock Many Legume Doors to Root Nodulation by Rhizobia
title_fullStr A Minimal Genetic Passkey to Unlock Many Legume Doors to Root Nodulation by Rhizobia
title_full_unstemmed A Minimal Genetic Passkey to Unlock Many Legume Doors to Root Nodulation by Rhizobia
title_short A Minimal Genetic Passkey to Unlock Many Legume Doors to Root Nodulation by Rhizobia
title_sort minimal genetic passkey to unlock many legume doors to root nodulation by rhizobia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7290934/
https://www.ncbi.nlm.nih.gov/pubmed/32392829
http://dx.doi.org/10.3390/genes11050521
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