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The subtilisin-like protease SBT3 contributes to insect resistance in tomato

Subtilisin-like proteases (SBTs) constitute a large family of extracellular plant proteases, the function of which is still largely unknown. In tomato plants, the expression of SBT3 was found to be induced in response to wounding and insect attack in injured leaves but not in healthy systemic tissue...

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Autores principales: Meyer, Michael, Huttenlocher, Franziska, Cedzich, Anna, Procopio, Susanne, Stroeder, Jasper, Pau-Roblot, Corinne, Lequart-Pillon, Michelle, Pelloux, Jérôme, Stintzi, Annick, Schaller, Andreas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5301937/
https://www.ncbi.nlm.nih.gov/pubmed/27259555
http://dx.doi.org/10.1093/jxb/erw220
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author Meyer, Michael
Huttenlocher, Franziska
Cedzich, Anna
Procopio, Susanne
Stroeder, Jasper
Pau-Roblot, Corinne
Lequart-Pillon, Michelle
Pelloux, Jérôme
Stintzi, Annick
Schaller, Andreas
author_facet Meyer, Michael
Huttenlocher, Franziska
Cedzich, Anna
Procopio, Susanne
Stroeder, Jasper
Pau-Roblot, Corinne
Lequart-Pillon, Michelle
Pelloux, Jérôme
Stintzi, Annick
Schaller, Andreas
author_sort Meyer, Michael
collection PubMed
description Subtilisin-like proteases (SBTs) constitute a large family of extracellular plant proteases, the function of which is still largely unknown. In tomato plants, the expression of SBT3 was found to be induced in response to wounding and insect attack in injured leaves but not in healthy systemic tissues. The time course of SBT3 induction resembled that of proteinase inhibitor II and other late wound response genes suggesting a role for SBT3 in herbivore defense. Consistent with such a role, larvae of the specialist herbivore Manduca sexta performed better on transgenic plants silenced for SBT3 expression (SBT3-SI). Supporting a contribution of SBT3 to systemic wound signaling, systemic induction of late wound response genes was attenuated in SBT3-SI plants. The partial loss of insect resistance may thus be explained by a reduction in systemic defense gene expression. Alternatively, SBT3 may play a post-ingestive role in plant defense. Similar to other anti-nutritive proteins, SBT3 was found to be stable and active in the insect’s digestive system, where it may act on unidentified proteins of insect or plant origin. Finally, a reduction in the level of pectin methylesterification that was observed in transgenic plants with altered levels of SBT3 expression suggested an involvement of SBT3 in the regulation of pectin methylesterases (PMEs). While such a role has been described in other systems, PME activity and the degree of pectin methylesterification did not correlate with the level of insect resistance in SBT3-SI and SBT3 overexpressing plants and are thus unrelated to the observed resistance phenotype.
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spelling pubmed-53019372017-02-16 The subtilisin-like protease SBT3 contributes to insect resistance in tomato Meyer, Michael Huttenlocher, Franziska Cedzich, Anna Procopio, Susanne Stroeder, Jasper Pau-Roblot, Corinne Lequart-Pillon, Michelle Pelloux, Jérôme Stintzi, Annick Schaller, Andreas J Exp Bot Research Paper Subtilisin-like proteases (SBTs) constitute a large family of extracellular plant proteases, the function of which is still largely unknown. In tomato plants, the expression of SBT3 was found to be induced in response to wounding and insect attack in injured leaves but not in healthy systemic tissues. The time course of SBT3 induction resembled that of proteinase inhibitor II and other late wound response genes suggesting a role for SBT3 in herbivore defense. Consistent with such a role, larvae of the specialist herbivore Manduca sexta performed better on transgenic plants silenced for SBT3 expression (SBT3-SI). Supporting a contribution of SBT3 to systemic wound signaling, systemic induction of late wound response genes was attenuated in SBT3-SI plants. The partial loss of insect resistance may thus be explained by a reduction in systemic defense gene expression. Alternatively, SBT3 may play a post-ingestive role in plant defense. Similar to other anti-nutritive proteins, SBT3 was found to be stable and active in the insect’s digestive system, where it may act on unidentified proteins of insect or plant origin. Finally, a reduction in the level of pectin methylesterification that was observed in transgenic plants with altered levels of SBT3 expression suggested an involvement of SBT3 in the regulation of pectin methylesterases (PMEs). While such a role has been described in other systems, PME activity and the degree of pectin methylesterification did not correlate with the level of insect resistance in SBT3-SI and SBT3 overexpressing plants and are thus unrelated to the observed resistance phenotype. Oxford University Press 2016-07 2016-06-03 /pmc/articles/PMC5301937/ /pubmed/27259555 http://dx.doi.org/10.1093/jxb/erw220 Text en © The Author 2016. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Meyer, Michael
Huttenlocher, Franziska
Cedzich, Anna
Procopio, Susanne
Stroeder, Jasper
Pau-Roblot, Corinne
Lequart-Pillon, Michelle
Pelloux, Jérôme
Stintzi, Annick
Schaller, Andreas
The subtilisin-like protease SBT3 contributes to insect resistance in tomato
title The subtilisin-like protease SBT3 contributes to insect resistance in tomato
title_full The subtilisin-like protease SBT3 contributes to insect resistance in tomato
title_fullStr The subtilisin-like protease SBT3 contributes to insect resistance in tomato
title_full_unstemmed The subtilisin-like protease SBT3 contributes to insect resistance in tomato
title_short The subtilisin-like protease SBT3 contributes to insect resistance in tomato
title_sort subtilisin-like protease sbt3 contributes to insect resistance in tomato
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5301937/
https://www.ncbi.nlm.nih.gov/pubmed/27259555
http://dx.doi.org/10.1093/jxb/erw220
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