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Effects on gene expression during maize-Azospirillum interaction in the presence of a plant-specific inhibitor of indole-3-acetic acid production

Amongst the sustainable alternatives to increase maize production is the use of plant growth-promoting bacteria (PGPB). Azospirillum brasilense is one of the most well-known PGPB being able to fix nitrogen and produce phytohormones, especially indole-3-acetic acid - IAA. This work investigated if th...

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Autores principales: Espindula, Eliandro, Sperb, Edilena Reis, Moz, Brenda, Pankievicz, Vânia Carla Silva, Tuleski, Thalita Regina, Tadra-Sfeir, Michelle Zibetti, Bonato, Paloma, Scheid, Camila, Merib, Josias, de Souza, Emanuel Maltempi, Passaglia, Luciane Maria Pereira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sociedade Brasileira de Genética 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10510588/
https://www.ncbi.nlm.nih.gov/pubmed/37725833
http://dx.doi.org/10.1590/1678-4685-GMB-2023-0100
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author Espindula, Eliandro
Sperb, Edilena Reis
Moz, Brenda
Pankievicz, Vânia Carla Silva
Tuleski, Thalita Regina
Tadra-Sfeir, Michelle Zibetti
Bonato, Paloma
Scheid, Camila
Merib, Josias
de Souza, Emanuel Maltempi
Passaglia, Luciane Maria Pereira
author_facet Espindula, Eliandro
Sperb, Edilena Reis
Moz, Brenda
Pankievicz, Vânia Carla Silva
Tuleski, Thalita Regina
Tadra-Sfeir, Michelle Zibetti
Bonato, Paloma
Scheid, Camila
Merib, Josias
de Souza, Emanuel Maltempi
Passaglia, Luciane Maria Pereira
author_sort Espindula, Eliandro
collection PubMed
description Amongst the sustainable alternatives to increase maize production is the use of plant growth-promoting bacteria (PGPB). Azospirillum brasilense is one of the most well-known PGPB being able to fix nitrogen and produce phytohormones, especially indole-3-acetic acid - IAA. This work investigated if there is any contribution of the bacterium to the plant’s IAA levels, and how it affects the plant. To inhibit plant IAA production, yucasin, an inhibitor of the TAM/YUC pathway, was applied. Plantlets’ IAA concentration was evaluated through HPLC and dual RNA-Seq was used to analyze gene expression. Statistical differences between the group treated with yucasin and the other groups showed that A. brasilense inoculation was able to prevent the phenotype caused by yucasin concerning the number of lateral roots. Genes involved in the auxin and ABA response pathways, auxin efflux transport, and the cell cycle were regulated by the presence of the bacterium, yucasin, or both. Genes involved in the response to biotic/abiotic stress, plant disease resistance, and a D-type cellulose synthase changed their expression pattern among two sets of comparisons in which A. brasilense acted as treatment. The results suggest that A. brasilense interferes with the expression of many maize genes through an IAA-independent pathway.
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spelling pubmed-105105882023-09-21 Effects on gene expression during maize-Azospirillum interaction in the presence of a plant-specific inhibitor of indole-3-acetic acid production Espindula, Eliandro Sperb, Edilena Reis Moz, Brenda Pankievicz, Vânia Carla Silva Tuleski, Thalita Regina Tadra-Sfeir, Michelle Zibetti Bonato, Paloma Scheid, Camila Merib, Josias de Souza, Emanuel Maltempi Passaglia, Luciane Maria Pereira Genet Mol Biol 60 years of the PPGBM UFRGS - Special Issue Amongst the sustainable alternatives to increase maize production is the use of plant growth-promoting bacteria (PGPB). Azospirillum brasilense is one of the most well-known PGPB being able to fix nitrogen and produce phytohormones, especially indole-3-acetic acid - IAA. This work investigated if there is any contribution of the bacterium to the plant’s IAA levels, and how it affects the plant. To inhibit plant IAA production, yucasin, an inhibitor of the TAM/YUC pathway, was applied. Plantlets’ IAA concentration was evaluated through HPLC and dual RNA-Seq was used to analyze gene expression. Statistical differences between the group treated with yucasin and the other groups showed that A. brasilense inoculation was able to prevent the phenotype caused by yucasin concerning the number of lateral roots. Genes involved in the auxin and ABA response pathways, auxin efflux transport, and the cell cycle were regulated by the presence of the bacterium, yucasin, or both. Genes involved in the response to biotic/abiotic stress, plant disease resistance, and a D-type cellulose synthase changed their expression pattern among two sets of comparisons in which A. brasilense acted as treatment. The results suggest that A. brasilense interferes with the expression of many maize genes through an IAA-independent pathway. Sociedade Brasileira de Genética 2023-09-18 /pmc/articles/PMC10510588/ /pubmed/37725833 http://dx.doi.org/10.1590/1678-4685-GMB-2023-0100 Text en https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License
spellingShingle 60 years of the PPGBM UFRGS - Special Issue
Espindula, Eliandro
Sperb, Edilena Reis
Moz, Brenda
Pankievicz, Vânia Carla Silva
Tuleski, Thalita Regina
Tadra-Sfeir, Michelle Zibetti
Bonato, Paloma
Scheid, Camila
Merib, Josias
de Souza, Emanuel Maltempi
Passaglia, Luciane Maria Pereira
Effects on gene expression during maize-Azospirillum interaction in the presence of a plant-specific inhibitor of indole-3-acetic acid production
title Effects on gene expression during maize-Azospirillum interaction in the presence of a plant-specific inhibitor of indole-3-acetic acid production
title_full Effects on gene expression during maize-Azospirillum interaction in the presence of a plant-specific inhibitor of indole-3-acetic acid production
title_fullStr Effects on gene expression during maize-Azospirillum interaction in the presence of a plant-specific inhibitor of indole-3-acetic acid production
title_full_unstemmed Effects on gene expression during maize-Azospirillum interaction in the presence of a plant-specific inhibitor of indole-3-acetic acid production
title_short Effects on gene expression during maize-Azospirillum interaction in the presence of a plant-specific inhibitor of indole-3-acetic acid production
title_sort effects on gene expression during maize-azospirillum interaction in the presence of a plant-specific inhibitor of indole-3-acetic acid production
topic 60 years of the PPGBM UFRGS - Special Issue
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10510588/
https://www.ncbi.nlm.nih.gov/pubmed/37725833
http://dx.doi.org/10.1590/1678-4685-GMB-2023-0100
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