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Intrinsically disordered Prosystemin discloses biologically active repeat motifs.

Authors :
Castaldi, Valeria
Langella, Emma
Buonanno, Martina
Di Lelio, Ilaria
Aprile, Anna Maria
Molisso, Donata
Criscuolo, Martina Chiara
D'Andrea, Luca Domenico
Romanelli, Alessandra
Amoresano, Angela
Pinto, Gabriella
Illiano, Anna
Chiaiese, Pasquale
Becchimanzi, Andrea
Pennacchio, Francesco
Rao, Rosa
Monti, Simona Maria
Source :
Plant Science. Mar2024, Vol. 340, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

The in-depth studies over the years on the defence barriers by tomato plants have shown that the Systemin peptide controls the response to a wealth of environmental stress agents. This multifaceted stress reaction seems to be related to the intrinsic disorder of its precursor protein, Prosystemin (ProSys). Since latest findings show that ProSys has biological functions besides Systemin sequence, here we wanted to assess if this precursor includes peptide motifs able to trigger stress-related pathways. Candidate peptides were identified in silico and synthesized to test their capacity to trigger defence responses in tomato plants against different biotic stressors. Our results demonstrated that ProSys harbours several repeat motifs which triggered plant immune reactions against pathogens and pest insects. Three of these peptides were detected by mass spectrometry in plants expressing ProSys, demonstrating their effective presence in vivo. These experimental data shed light on unrecognized functions of ProSys, mediated by multiple biologically active sequences which may partly account for the capacity of ProSys to induce defense responses to different stress agents. • Plant defense mechanisms are extremely complex. • Prosys is the precursor protein of defense related peptide Sys in Solanaceae. • Prosys contains, beside Sys, short peptide motifs which protect plants from stress. • Peptide motifs were detected in vivo opening novel perspectives in plant immune reactions. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01689452
Volume :
340
Database :
Academic Search Index
Journal :
Plant Science
Publication Type :
Academic Journal
Accession number :
175164604
Full Text :
https://doi.org/10.1016/j.plantsci.2023.111969