Nodule-specific cysteine-rich peptide 343 is required for symbiotic nitrogen fixation in Medicago truncatula

Author:

Zhang Rui1ORCID,Shen Yitong1ORCID,He Juanxia1ORCID,Zhang Chenyan1ORCID,Ma Yelin1ORCID,Sun Chenghui1ORCID,Song Xiaopan1ORCID,Li Li1ORCID,Zhang Sisi1ORCID,Biró János Barnabás2ORCID,Saifi Farheen3ORCID,Kaló Péter23,Chen Rujin1ORCID

Affiliation:

1. MOE Key Laboratory of Cell Activities and Stress Adaptations, School of Life Sciences, Lanzhou University , Lanzhou, Gansu 730000 , China

2. Institute of Plant Biology, Biological Research Centre, Eötvös Lóránd Research Network , Szeged , Hungary

3. Institute of Genetics and Biotechnology, Hungarian University of Agriculture and Life Sciences , Gödöllő , Hungary

Abstract

Abstract Symbiotic interactions between legumes and rhizobia lead to the development of root nodules and nitrogen fixation by differentiated bacteroids within nodules. Differentiation of the endosymbionts is reversible or terminal, determined by plant effectors. In inverted repeat lacking clade legumes, nodule-specific cysteine-rich (NCR) peptides control the terminal differentiation of bacteroids. Medicago truncatula contains ∼700 NCR-coding genes. However, the role of few NCR peptides has been demonstrated. Here, we report characterization of fast neutron 2106 (FN2106), a symbiotic nitrogen fixation defective (fix−) mutant of M. truncatula. Using a transcript-based approach, together with linkage and complementation tests, we showed that loss-of-function of NCR343 results in impaired bacteroid differentiation and/or maintenance and premature nodule senescence of the FN2106 mutant. NCR343 was specifically expressed in nodules. Subcellular localization studies showed that the functional NCR343-YFP fusion protein colocalizes with bacteroids in symbiosomes in infected nodule cells. Transcriptomic analyses identified senescence-, but not defense-related genes, as being significantly upregulated in ncr343 (FN2106) nodules. Taken together, results from our phenotypic and transcriptomic analyses of a loss-of-function ncr343 mutant demonstrate an essential role of NCR343 in bacteroid differentiation and/or maintenance required for symbiotic nitrogen fixation.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Strategic Priority Research Program of Chinese Academy of Sciences

Hungarian National Research Fund

National Research, Development and Innovation Office

National Science Foundation

The Samuel Roberts Noble Foundation, Inc.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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