Literature DB >> 29393515

CLE peptide tri-arabinosylation and peptide domain sequence composition are essential for SUNN-dependent autoregulation of nodulation in Medicago truncatula.

Nijat Imin1, Neha Patel1, Leo Corcilius2, Richard J Payne2, Michael A Djordjevic1.   

Abstract

MtCLE12 and MtCLE13 encode CLAVATA3/EMBRYO-SURROUNDING REGION RELATED (CLE) peptides which regulate autoregulation of nodulation (AON) in Medicago through the shoot receptor, SUNN (SUPER NUMERIC NODULES). Genetics suggests RDN1 (ROOT-DETERMINED NODULATION 1) arabinosylates MtCLE12 to enable SUNN perception. The functional structures of MtCLE12 and MtCLE13 peptides, however, remain elusive. We combined genetic and chemical synthesis approaches to determine if glyco-modifications of three nodule-expressed CLE peptides are essential for AON. We also examined how root and shoot applied AON-CLEs inhibit nodulation. MtCLE12, MtCLE13 and MtCLE42 peptides were synthesized with hydroxylation, mono-arabinosylation or tri-arabinosylation (TaP) at proline 7. Only MtCLE12-TaP and MtCLE13-TaP peptides induced AON in wild-type (WT) and rdn1-1, but not in sunn-4. The application of MtCLE13-TaP to cotyledons 1 d before rhizobial inoculation completely inhibited both rhizobial infection and nodulation. By contrast, MtCLE12-TaP induced significant AON without abolishing rhizobial infection. The results indicate that key CLE domain amino acids and TaP modifications to MtCLE12 and MtCLE13 are essential for SUNN-dependent AON. We also show evidence that RDN1 does not tri-arabinosylate MtCLE13. Finally, MtCLE13-TaP can induce a strong AON response in shoots that inhibits the entire symbiotic processes in roots. We present a new model for AON in Medicago.
© 2018 The Authors. New Phytologist © 2018 New Phytologist Trust.

Entities:  

Keywords:  zzm321990Medicago truncatulazzm321990; CLE; RDN1; arabinosylation; autoregulation of nodulation; nodule formation; plant signaling; symbiosis

Mesh:

Substances:

Year:  2018        PMID: 29393515     DOI: 10.1111/nph.15019

Source DB:  PubMed          Journal:  New Phytol        ISSN: 0028-646X            Impact factor:   10.151


  16 in total

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4.  Lotus japonicus HAR1 regulates root morphology locally and systemically under a moderate nitrate condition in the absence of rhizobia.

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Review 5.  Progress in the Self-Regulation System in Legume Nodule Development-AON (Autoregulation of Nodulation).

Authors:  Yuhe Li; Yue Pei; Yitong Shen; Rui Zhang; Mingming Kang; Yelin Ma; Dengyao Li; Yuhui Chen
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Review 6.  Sweet Modifications Modulate Plant Development.

Authors:  Tibo De Coninck; Koen Gistelinck; Henry C Janse van Rensburg; Wim Van den Ende; Els J M Van Damme
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7.  NLP1 reciprocally regulates nitrate inhibition of nodulation through SUNN-CRA2 signaling in Medicago truncatula.

Authors:  Zhenpeng Luo; Jie-Shun Lin; Yali Zhu; Mengdi Fu; Xiaolin Li; Fang Xie
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Review 8.  Impact of Plant Peptides on Symbiotic Nodule Development and Functioning.

Authors:  Attila Kereszt; Peter Mergaert; Jesús Montiel; Gabriella Endre; Éva Kondorosi
Journal:  Front Plant Sci       Date:  2018-07-17       Impact factor: 5.753

9.  The Art of Self-Control - Autoregulation of Plant-Microbe Symbioses.

Authors:  Chenglei Wang; James B Reid; Eloise Foo
Journal:  Front Plant Sci       Date:  2018-07-10       Impact factor: 5.753

10.  Suppression of NB-LRR genes by miRNAs promotes nitrogen-fixing nodule development in Medicago truncatula.

Authors:  Anita Sós-Hegedűs; Ágota Domonkos; Tamás Tóth; Péter Gyula; Péter Kaló; György Szittya
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