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Induced Systemic Resistance in the Bacillus spp.—Capsicum chinense Jacq.—PepGMV Interaction, Elicited by Defense-Related Gene Expression

Induced systemic resistance (ISR) is a mechanism involved in the plant defense response against pathogens. Certain members of the Bacillus genus are able to promote the ISR by maintaining a healthy photosynthetic apparatus, which prepares the plant for future stress situations. The goal of the prese...

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Autores principales: Samaniego-Gámez, Blancka Yesenia, Valle-Gough, Raúl Enrique, Garruña-Hernández, René, Reyes-Ramírez, Arturo, Latournerie-Moreno, Luis, Tun-Suárez, José María, Villanueva-Alonzo, Hernán de Jesús, Nuñez-Ramírez, Fidel, Diaz, Lourdes Cervantes, Samaniego-Gámez, Samuel Uriel, Minero-García, Yereni, Hernandez-Zepeda, Cecilia, Moreno-Valenzuela, Oscar A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10255508/
https://www.ncbi.nlm.nih.gov/pubmed/37299048
http://dx.doi.org/10.3390/plants12112069
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author Samaniego-Gámez, Blancka Yesenia
Valle-Gough, Raúl Enrique
Garruña-Hernández, René
Reyes-Ramírez, Arturo
Latournerie-Moreno, Luis
Tun-Suárez, José María
Villanueva-Alonzo, Hernán de Jesús
Nuñez-Ramírez, Fidel
Diaz, Lourdes Cervantes
Samaniego-Gámez, Samuel Uriel
Minero-García, Yereni
Hernandez-Zepeda, Cecilia
Moreno-Valenzuela, Oscar A.
author_facet Samaniego-Gámez, Blancka Yesenia
Valle-Gough, Raúl Enrique
Garruña-Hernández, René
Reyes-Ramírez, Arturo
Latournerie-Moreno, Luis
Tun-Suárez, José María
Villanueva-Alonzo, Hernán de Jesús
Nuñez-Ramírez, Fidel
Diaz, Lourdes Cervantes
Samaniego-Gámez, Samuel Uriel
Minero-García, Yereni
Hernandez-Zepeda, Cecilia
Moreno-Valenzuela, Oscar A.
author_sort Samaniego-Gámez, Blancka Yesenia
collection PubMed
description Induced systemic resistance (ISR) is a mechanism involved in the plant defense response against pathogens. Certain members of the Bacillus genus are able to promote the ISR by maintaining a healthy photosynthetic apparatus, which prepares the plant for future stress situations. The goal of the present study was to analyze the effect of the inoculation of Bacillus on the expression of genes involved in plant responses to pathogens, as a part of the ISR, during the interaction of Capsicum chinense infected with PepGMV. The effects of the inoculation of the Bacillus strains in pepper plants infected with PepGMV were evaluated by observing the accumulation of viral DNA and the visible symptoms of pepper plants during a time-course experiment in greenhouse and in in vitro experiments. The relative expression of the defense genes CcNPR1, CcPR10, and CcCOI1 were also evaluated. The results showed that the plants inoculated with Bacillus subtilis K47, Bacillus cereus K46, and Bacillus sp. M9 had a reduction in the PepGMV viral titer, and the symptoms in these plants were less severe compared to the plants infected with PepGMV and non-inoculated with Bacillus. Additionally, an increase in the transcript levels of CcNPR1, CcPR10, and CcCOI1 was observed in plants inoculated with Bacillus strains. Our results suggest that the inoculation of Bacillus strains interferes with the viral replication, through the increase in the transcription of pathogenesis-related genes, which is reflected in a lowered plant symptomatology and an improved yield in the greenhouse, regardless of PepGMV infection status.
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spelling pubmed-102555082023-06-10 Induced Systemic Resistance in the Bacillus spp.—Capsicum chinense Jacq.—PepGMV Interaction, Elicited by Defense-Related Gene Expression Samaniego-Gámez, Blancka Yesenia Valle-Gough, Raúl Enrique Garruña-Hernández, René Reyes-Ramírez, Arturo Latournerie-Moreno, Luis Tun-Suárez, José María Villanueva-Alonzo, Hernán de Jesús Nuñez-Ramírez, Fidel Diaz, Lourdes Cervantes Samaniego-Gámez, Samuel Uriel Minero-García, Yereni Hernandez-Zepeda, Cecilia Moreno-Valenzuela, Oscar A. Plants (Basel) Article Induced systemic resistance (ISR) is a mechanism involved in the plant defense response against pathogens. Certain members of the Bacillus genus are able to promote the ISR by maintaining a healthy photosynthetic apparatus, which prepares the plant for future stress situations. The goal of the present study was to analyze the effect of the inoculation of Bacillus on the expression of genes involved in plant responses to pathogens, as a part of the ISR, during the interaction of Capsicum chinense infected with PepGMV. The effects of the inoculation of the Bacillus strains in pepper plants infected with PepGMV were evaluated by observing the accumulation of viral DNA and the visible symptoms of pepper plants during a time-course experiment in greenhouse and in in vitro experiments. The relative expression of the defense genes CcNPR1, CcPR10, and CcCOI1 were also evaluated. The results showed that the plants inoculated with Bacillus subtilis K47, Bacillus cereus K46, and Bacillus sp. M9 had a reduction in the PepGMV viral titer, and the symptoms in these plants were less severe compared to the plants infected with PepGMV and non-inoculated with Bacillus. Additionally, an increase in the transcript levels of CcNPR1, CcPR10, and CcCOI1 was observed in plants inoculated with Bacillus strains. Our results suggest that the inoculation of Bacillus strains interferes with the viral replication, through the increase in the transcription of pathogenesis-related genes, which is reflected in a lowered plant symptomatology and an improved yield in the greenhouse, regardless of PepGMV infection status. MDPI 2023-05-23 /pmc/articles/PMC10255508/ /pubmed/37299048 http://dx.doi.org/10.3390/plants12112069 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Samaniego-Gámez, Blancka Yesenia
Valle-Gough, Raúl Enrique
Garruña-Hernández, René
Reyes-Ramírez, Arturo
Latournerie-Moreno, Luis
Tun-Suárez, José María
Villanueva-Alonzo, Hernán de Jesús
Nuñez-Ramírez, Fidel
Diaz, Lourdes Cervantes
Samaniego-Gámez, Samuel Uriel
Minero-García, Yereni
Hernandez-Zepeda, Cecilia
Moreno-Valenzuela, Oscar A.
Induced Systemic Resistance in the Bacillus spp.—Capsicum chinense Jacq.—PepGMV Interaction, Elicited by Defense-Related Gene Expression
title Induced Systemic Resistance in the Bacillus spp.—Capsicum chinense Jacq.—PepGMV Interaction, Elicited by Defense-Related Gene Expression
title_full Induced Systemic Resistance in the Bacillus spp.—Capsicum chinense Jacq.—PepGMV Interaction, Elicited by Defense-Related Gene Expression
title_fullStr Induced Systemic Resistance in the Bacillus spp.—Capsicum chinense Jacq.—PepGMV Interaction, Elicited by Defense-Related Gene Expression
title_full_unstemmed Induced Systemic Resistance in the Bacillus spp.—Capsicum chinense Jacq.—PepGMV Interaction, Elicited by Defense-Related Gene Expression
title_short Induced Systemic Resistance in the Bacillus spp.—Capsicum chinense Jacq.—PepGMV Interaction, Elicited by Defense-Related Gene Expression
title_sort induced systemic resistance in the bacillus spp.—capsicum chinense jacq.—pepgmv interaction, elicited by defense-related gene expression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10255508/
https://www.ncbi.nlm.nih.gov/pubmed/37299048
http://dx.doi.org/10.3390/plants12112069
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