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Transcriptomic dissection of Bradyrhizobium sp. strain ORS285 in symbiosis with Aeschynomene spp. inducing different bacteroid morphotypes with contrasted symbiotic efficiency

Florian Lamouche; Djamel Gully; Anaïs Chaumeret; Nico Nouwen; Camille Verly; Olivier Pierre; Coline Sciallano; Joël Fardoux; Christian Jeudy; Attila Szücs; Samuel Mondy; Christophe Salon; István Nagy; Attila Kereszt; Yves Dessaux; Eric Giraud; Peter Mergaert; Benoit Alunni
Environmental Microbiology · Vol. 21, Issue 9 · pp. 3244-3258 · 2019

Abstract

Summary To circumvent the paucity of nitrogen sources in the soil legume plants establish a symbiotic interaction with nitrogen‐fixing soil bacteria called rhizobia. During symbiosis, the plants form root organs called nodules, where bacteria are housed intracellularly and become active nitrogen fixers known as bacteroids. Depending on their host plant, bacteroids can adopt different morphotypes, being either unmodified (U), elongated (E) or spherical (S). E‐ and S‐type bacteroids undergo a terminal differentiation leading to irreversible morphological changes and DNA endoreduplication. Previous studies suggest that differentiated bacteroids display an increased symbiotic efficiency (E > U and S > U). In this study, we used a combination of Aeschynomene species inducing E‐ or S‐type bacteroids in symbiosis with Bradyrhizobium sp. ORS285 to show that S‐type bacteroids present a better symbiotic efficiency than E‐type bacteroids. We performed a transcriptomic analysis on E‐ and S‐type bacteroids formed by Aeschynomene afraspera and Aeschynomene indica nodules and identified the bacterial functions activated in bacteroids and specific to each bacteroid type. Extending the expression analysis in E‐ and S‐type bacteroids in other Aeschynomene species by qRT‐PCR on selected genes from the transcriptome analysis narrowed down the set of bacteroid morphotype‐specific genes. Functional analysis of a selected subset of 31 bacteroid‐induced or morphotype‐specific genes revealed no symbiotic phenotypes in the mutants. This highlights the robustness of the symbiotic program but could also indicate that the bacterial response to the plant environment is partially anticipatory or even maladaptive. Our analysis confirms the correlation between differentiation and efficiency of the bacteroids and provides a framework for the identification of bacterial functions that affect the efficiency of bacteroids.© 2018 Society for Applied Microbiology and John Wiley & Sons Ltd

Bibliographic Information

JournalEnvironmental Microbiology
PublisherWiley
Publication Date2019-09-01
Publication Year2019
Volume21
Issue9
Pages3244-3258
Document TypeJournal Article
Print ISSN1462-2912
eISSN1462-2920
DOI10.1111/1462-2920.14292
SubjectMicrobial Ecology

Access Information

NARA Access Coverage1999-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/14622920
Publisher PageOpen Publisher Page
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