Plant Defence Induction by <i>Meyerozyma guilliermondii</i> in <i>Vitis vinifera</i> L.

This article emphasizes the crucial importance of yeast <i>Meyerozyma guilliermondii</i> (Patent CECT13190) as a biological control agent (BCA) in eliciting defensive responses in vine plants, and is supported by comprehensive physiological, proteomic, and transcriptomic analyses. The re...

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Main Authors: José María Alonso de Robador, Nora Ortega Pérez, M. Teresa Sanchez-Ballesta, M. Luisa Tello Mariscal, Beatriz Pintos López, Arancha Gómez-Garay
Format: Article
Language:English
Published: MDPI AG 2023-11-01
Series:Agronomy
Subjects:
Online Access:https://www.mdpi.com/2073-4395/13/11/2780
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author José María Alonso de Robador
Nora Ortega Pérez
M. Teresa Sanchez-Ballesta
M. Luisa Tello Mariscal
Beatriz Pintos López
Arancha Gómez-Garay
author_facet José María Alonso de Robador
Nora Ortega Pérez
M. Teresa Sanchez-Ballesta
M. Luisa Tello Mariscal
Beatriz Pintos López
Arancha Gómez-Garay
author_sort José María Alonso de Robador
collection DOAJ
description This article emphasizes the crucial importance of yeast <i>Meyerozyma guilliermondii</i> (Patent CECT13190) as a biological control agent (BCA) in eliciting defensive responses in vine plants, and is supported by comprehensive physiological, proteomic, and transcriptomic analyses. The results demonstrate that the BCA <i>M. guilliermondii</i> can induce enhanced defensive responses, as reflected in the regulation of key proteins. Notably, the upregulated expression of calmodulin and pathogenesis-related protein 10 (PR-10) are indicative of a complex interplay between calcium signalling, salicylic acid accumulation, and the elicitation of plant defence responses against pathogens. Furthermore, changes in microtubule dynamics and proteins related to protein synthesis and folding are observed, confirming the elicitation of defence responses. The correspondence between proteomic and transcriptomic analyses for genes codifying pathogenesis-related proteins, such as Vcgns1, VviTL1, and Vcchit1b, reinforces the empirical robustness of our findings. Collectively, our research explores the modulation of plant defences by the BCA, opening promising avenues for innovative agricultural strategies that enhance crop resilience and productivity.
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spelling doaj.art-6766f13c4f43454b88680e97bf174e922023-11-24T14:23:58ZengMDPI AGAgronomy2073-43952023-11-011311278010.3390/agronomy13112780Plant Defence Induction by <i>Meyerozyma guilliermondii</i> in <i>Vitis vinifera</i> L.José María Alonso de Robador0Nora Ortega Pérez1M. Teresa Sanchez-Ballesta2M. Luisa Tello Mariscal3Beatriz Pintos López4Arancha Gómez-Garay5Research Group FiVe-A, Plant Physiology Unit, Genetic, Physiology and Microbiology Department, Faculty of Biological Sciences, Universidad Complutense de Madrid, Ciudad Universitaria, E-28040 Madrid, SpainResearch Group FiVe-A, Plant Physiology Unit, Genetic, Physiology and Microbiology Department, Faculty of Biological Sciences, Universidad Complutense de Madrid, Ciudad Universitaria, E-28040 Madrid, SpainDepartment of Characterization, Quality and Safety, Institute of Food Science, Technology and Nutrition (ICTAN-CSIC), Ciudad Universitaria, E-28040 Madrid, SpainINIA-CSIC, Ministry of Science and Innovation, Carretera de la Coruña Km 7.5, E-28040 Madrid, SpainResearch Group FiVe-A, Plant Physiology Unit, Genetic, Physiology and Microbiology Department, Faculty of Biological Sciences, Universidad Complutense de Madrid, Ciudad Universitaria, E-28040 Madrid, SpainResearch Group FiVe-A, Plant Physiology Unit, Genetic, Physiology and Microbiology Department, Faculty of Biological Sciences, Universidad Complutense de Madrid, Ciudad Universitaria, E-28040 Madrid, SpainThis article emphasizes the crucial importance of yeast <i>Meyerozyma guilliermondii</i> (Patent CECT13190) as a biological control agent (BCA) in eliciting defensive responses in vine plants, and is supported by comprehensive physiological, proteomic, and transcriptomic analyses. The results demonstrate that the BCA <i>M. guilliermondii</i> can induce enhanced defensive responses, as reflected in the regulation of key proteins. Notably, the upregulated expression of calmodulin and pathogenesis-related protein 10 (PR-10) are indicative of a complex interplay between calcium signalling, salicylic acid accumulation, and the elicitation of plant defence responses against pathogens. Furthermore, changes in microtubule dynamics and proteins related to protein synthesis and folding are observed, confirming the elicitation of defence responses. The correspondence between proteomic and transcriptomic analyses for genes codifying pathogenesis-related proteins, such as Vcgns1, VviTL1, and Vcchit1b, reinforces the empirical robustness of our findings. Collectively, our research explores the modulation of plant defences by the BCA, opening promising avenues for innovative agricultural strategies that enhance crop resilience and productivity.https://www.mdpi.com/2073-4395/13/11/2780biocontrolyeastvine<i>Fusarium equiseti</i>gene expressionproteomic analysis
spellingShingle José María Alonso de Robador
Nora Ortega Pérez
M. Teresa Sanchez-Ballesta
M. Luisa Tello Mariscal
Beatriz Pintos López
Arancha Gómez-Garay
Plant Defence Induction by <i>Meyerozyma guilliermondii</i> in <i>Vitis vinifera</i> L.
Agronomy
biocontrol
yeast
vine
<i>Fusarium equiseti</i>
gene expression
proteomic analysis
title Plant Defence Induction by <i>Meyerozyma guilliermondii</i> in <i>Vitis vinifera</i> L.
title_full Plant Defence Induction by <i>Meyerozyma guilliermondii</i> in <i>Vitis vinifera</i> L.
title_fullStr Plant Defence Induction by <i>Meyerozyma guilliermondii</i> in <i>Vitis vinifera</i> L.
title_full_unstemmed Plant Defence Induction by <i>Meyerozyma guilliermondii</i> in <i>Vitis vinifera</i> L.
title_short Plant Defence Induction by <i>Meyerozyma guilliermondii</i> in <i>Vitis vinifera</i> L.
title_sort plant defence induction by i meyerozyma guilliermondii i in i vitis vinifera i l
topic biocontrol
yeast
vine
<i>Fusarium equiseti</i>
gene expression
proteomic analysis
url https://www.mdpi.com/2073-4395/13/11/2780
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