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Peribacteroid space acidification: a marker of mature bacteroid functioning in Medicago truncatula nodules
Authors:OLIVIER PIERRE  GILBERT ENGLER  JULIE HOPKINS  FRÉDÉRIC BRAU  ERIC BONCOMPAGNI  DIDIER HÉROUART
Institution:1. UMR INRA 1355‐CNRS 7254‐Université de Nice Sophia‐Antipolis, Institut Sophia Agrobiotech, , F‐06903 Sophia Antipolis, France;2. CNRS, UMR 7275, Institut de Pharmacologie, , F‐06560 Valbonne, France
Abstract:Legumes form a symbiotic interaction with Rhizobiaceae bacteria, which differentiate into nitrogen‐fixing bacteroids within nodules. Here, we investigated in vivo the pH of the peribacteroid space (PBS) surrounding the bacteroid and pH variation throughout symbiosis. In vivo confocal microscopy investigations, using acidotropic probes, demonstrated the acidic state of the PBS. In planta analysis of nodule senescence induced by distinct biological processes drastically increased PBS pH in the N2‐fixing zone (zone III). Therefore, the PBS acidification observed in mature bacteroids can be considered as a marker of bacteroid N2 fixation. Using a pH‐sensitive ratiometric probe, PBS pH was measured in vivo during the whole symbiotic process. We showed a progressive acidification of the PBS from the bacteroid release up to the onset of N2 fixation. Genetic and pharmacological approaches were conducted and led to disruption of the PBS acidification. Altogether, our findings shed light on the role of PBS pH of mature bacteroids in nodule functioning, providing new tools to monitor in vivo bacteroid physiology.
Keywords:Sinorhizobium meliloti  acidic compartment  confocal microscopy  nitrogen‐fixing symbiosis  ratio imaging
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