The Compact Root Architecture 2 systemic pathway is required for the repression of cytokinins and miR399 accumulation in Medicago truncatula N-limited plants

Author:

Argirò Luca1ORCID,Laffont Carole1,Moreau Corentin1,Moreau Carol1,Su Yangyang1,Pervent Marjorie2ORCID,Parrinello Hugues3,Blein Thomas1ORCID,Kohlen Wouter4ORCID,Lepetit Marc5ORCID,Frugier Florian1ORCID

Affiliation:

1. Institute of Plant Sciences – Paris Saclay (IPS2), University of Paris-Saclay, CNRS, University of Paris-Cité, INRAE, Univ Evry, Bat 630, Avenue des Sciences , 91190 Gif-sur-Yvette , France

2. Plant Health Institute of Montpellier (PHIM), INRAE, SupAgro, University of Montpellier, CIRAD, IRD, Campus de Baillarguet , 34398 Montpellier , France

3. MGX-Montpellier GenomiX, University of Montpellier, CNRS, INSERM , 34398 Montpellier , France

4. Laboratory of Cell and Developmental Biology, Department of Plant Sciences, Wageningen University & Research , 6708 PB Wageningen , The Netherlands

5. Institute of Sophia Agrobiotech (ISA), INRAE, Université Côte d’Azur, CNRS , 06903 Sophia-Antipolis , France

Abstract

Abstract Legume plants can acquire mineral nitrogen (N) either through their roots or via a symbiotic interaction with N-fixing rhizobia bacteria housed in root nodules. To identify shoot-to-root systemic signals acting in Medicago truncatula plants at N deficit or N satiety, plants were grown in a split-root experimental design in which either high or low N was provided to half of the root system, allowing the analysis of systemic pathways independently of any local N response. Among the plant hormone families analyzed, the cytokinin trans-zeatin accumulated in plants at N satiety. Cytokinin application by petiole feeding led to inhibition of both root growth and nodulation. In addition, an exhaustive analysis of miRNAs revealed that miR2111 accumulates systemically under N deficit in both shoots and non-treated distant roots, whereas a miRNA related to inorganic phosphate (Pi) acquisition, miR399, accumulates in plants grown under N satiety. These two accumulation patterns are dependent on Compact Root Architecture 2 (CRA2), a receptor required for C-terminally Encoded Peptide (CEP) signaling. Constitutive ectopic expression of miR399 reduced nodule numbers and root biomass depending on Pi availability, suggesting that the miR399-dependent Pi-acquisition regulatory module controlled by N availability affects the development of the whole legume plant root system.

Funder

Agence Nationale de la Recherche

Chinese Academy of Science

Publisher

Oxford University Press (OUP)

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