MsSPL9 Modulates Nodulation under Nitrate Sufficiency Condition in Medicago sativa

Author:

Nasrollahi Vida12,Allam Gamalat12,Kohalmi Susanne E.2,Hannoufa Abdelali12ORCID

Affiliation:

1. Agriculture and Agri-Food Canada, 1391 Sandford Street, London, ON N5V 4T3, Canada

2. Department of Biology, University of Western Ontario, 1151 Richmond Street, London, ON N6A 3K7, Canada

Abstract

Nodulation in Leguminous spp. is induced by common environmental cues, such as low nitrogen availability conditions, in the presence of the specific Rhizobium spp. in the rhizosphere. Medicago sativa (alfalfa) is an important nitrogen-fixing forage crop that is widely cultivated around the world and relied upon as a staple source of forage in livestock feed. Although alfalfa’s relationship with these bacteria is one of the most efficient between rhizobia and legume plants, breeding for nitrogen-related traits in this crop has received little attention. In this report, we investigate the role of Squamosa-Promoter Binding Protein-Like 9 (SPL9), a target of miR156, in nodulation in alfalfa. Transgenic alfalfa plants with SPL9-silenced (SPL9-RNAi) and overexpressed (35S::SPL9) were compared to wild-type (WT) alfalfa for phenotypic changes in nodulation in the presence and absence of nitrogen. Phenotypic analyses showed that silencing of MsSPL9 in alfalfa caused an increase in the number of nodules. Moreover, the characterization of phenotypic and molecular parameters revealed that MsSPL9 regulates nodulation under a high concentration of nitrate (10 mM KNO3) by regulating the transcription levels of the nitrate-responsive genes Nitrate Reductase1 (NR1), NR2, Nitrate transporter 2.5 (NRT2.5), and a shoot-controlled autoregulation of nodulation (AON) gene, Super numeric nodules (SUNN). While MsSPL9–overexpressing transgenic plants have dramatically increased transcript levels of SUNN, NR1, NR2, and NRT2.5, reducing MsSPL9 caused downregulation of these genes and displayed a nitrogen-starved phenotype, as downregulation of the MsSPL9 transcript levels caused a nitrate-tolerant nodulation phenotype. Taken together, our results suggest that MsSPL9 regulates nodulation in alfalfa in response to nitrate.

Funder

Natural Sciences and Engineering Research Council of Canada

Agriculture and Agri-Food Canada

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference74 articles.

1. The rules of engagement in the legume-rhizobial symbiosis;Oldroyd;Annu. Rev. Genet.,2011

2. The molecular network governing nodule organogenesis and infection in the model legume Lotus japonicus;Madsen;Nat. Commun.,2010

3. Common and not so common symbiotic entry;Held;Trends Plant Sci.,2010

4. Coordinating nodule morphogenesis with rhizobial infection in legumes;Oldroyd;Annu. Rev. Genet.,2008

5. Molecular analysis of legume nodule development and autoregulation;Ferguson;J. Integr. Plant Biol.,2010

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