Systemin (Sys) is an octadecapeptide, which upon wounding, is released from the carboxy terminus of its precursor, Prosystemin (ProSys), to promote plant defenses. Recent findings on the disordered structure of ProSys prompted us to investigate a putative biological role of the whole precursor deprived of the Sys peptide. We produced transgenic tomato plants expressing a truncated ProSys gene in which the exon coding for Sys was removed and compared their defense response with that induced by the exogenous application of the recombinant truncated ProSys (ProSys(1-178), the Prosystemin sequence devoid of Sys region). By combining protein structure analyses, transcriptomic analysis, gene expression profiling and bioassays with different pests, we demonstrate that truncated ProSys promotes defense barriers in tomato plants through a hormone-independent defense pathway, likely associated with the production of oligogalacturonides (OGs). Both transgenic and plants treated with the recombinant protein showed the modulation of the expression of genes linked with defense responses and resulted in protection against the lepidopteran pest Spodoptera littoralis and the fungus Botrytis cinerea. Our results suggest that the overall function of the wild-type ProSys is more complex than previously shown, as it might activate at least two tomato defense pathways: the well-known Sys-dependent pathway connected with the induction of jasmonic acid biosynthesis and the successive activation of a set of defense-related genes, and the ProSys(1-178)-dependent pathway associated with OGs production leading to the OGs mediate plant immunity.

Tomato Prosystemin Is Much More than a Simple Systemin Precursor / Molisso, D.; Coppola, M.; Buonanno, M.; Di Lelio, I.; Monti, S. M.; Melchiorre, C.; Amoresano, A.; Corrado, G.; Delano-Frier, J. P.; Becchimanzi, A.; Pennacchio, F.; Rao, R.. - In: BIOLOGY. - ISSN 2079-7737. - 11:1(2022), p. 124. [10.3390/biology11010124]

Tomato Prosystemin Is Much More than a Simple Systemin Precursor

Molisso D.
Primo
Investigation
;
Di Lelio I.
Investigation
;
Melchiorre C.
Investigation
;
Amoresano A.
Investigation
;
Corrado G.
Methodology
;
Becchimanzi A.
Methodology
;
Pennacchio F.
Penultimo
Writing – Review & Editing
;
Rao R.
Ultimo
2022

Abstract

Systemin (Sys) is an octadecapeptide, which upon wounding, is released from the carboxy terminus of its precursor, Prosystemin (ProSys), to promote plant defenses. Recent findings on the disordered structure of ProSys prompted us to investigate a putative biological role of the whole precursor deprived of the Sys peptide. We produced transgenic tomato plants expressing a truncated ProSys gene in which the exon coding for Sys was removed and compared their defense response with that induced by the exogenous application of the recombinant truncated ProSys (ProSys(1-178), the Prosystemin sequence devoid of Sys region). By combining protein structure analyses, transcriptomic analysis, gene expression profiling and bioassays with different pests, we demonstrate that truncated ProSys promotes defense barriers in tomato plants through a hormone-independent defense pathway, likely associated with the production of oligogalacturonides (OGs). Both transgenic and plants treated with the recombinant protein showed the modulation of the expression of genes linked with defense responses and resulted in protection against the lepidopteran pest Spodoptera littoralis and the fungus Botrytis cinerea. Our results suggest that the overall function of the wild-type ProSys is more complex than previously shown, as it might activate at least two tomato defense pathways: the well-known Sys-dependent pathway connected with the induction of jasmonic acid biosynthesis and the successive activation of a set of defense-related genes, and the ProSys(1-178)-dependent pathway associated with OGs production leading to the OGs mediate plant immunity.
2022
Tomato Prosystemin Is Much More than a Simple Systemin Precursor / Molisso, D.; Coppola, M.; Buonanno, M.; Di Lelio, I.; Monti, S. M.; Melchiorre, C.; Amoresano, A.; Corrado, G.; Delano-Frier, J. P.; Becchimanzi, A.; Pennacchio, F.; Rao, R.. - In: BIOLOGY. - ISSN 2079-7737. - 11:1(2022), p. 124. [10.3390/biology11010124]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/877931
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