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Ethyl Butanoate, Constituent of Cassava Wastewater Volatiloma, a Potential Soil Fumigant Against Meloidogyne Javanica

As a result of more restrictive legislation regarding the use of pesticides, over the last two decades, the demand for new soil fumigants has increased. These compounds can come from a variety of sources, including organic residues. In this study, we identified in the cassava wastewater volatiloma a...

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Autores principales: de Souza, Simone Ribeiro, Campos, Vicente Paulo, de Paula, Letícia Lopes, Pedroso, Marcio Pozzobon, Terra, Willian César
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sciendo 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9583435/
https://www.ncbi.nlm.nih.gov/pubmed/36338428
http://dx.doi.org/10.2478/jofnem-2022-0031
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author de Souza, Simone Ribeiro
Campos, Vicente Paulo
de Paula, Letícia Lopes
Pedroso, Marcio Pozzobon
Terra, Willian César
author_facet de Souza, Simone Ribeiro
Campos, Vicente Paulo
de Paula, Letícia Lopes
Pedroso, Marcio Pozzobon
Terra, Willian César
author_sort de Souza, Simone Ribeiro
collection PubMed
description As a result of more restrictive legislation regarding the use of pesticides, over the last two decades, the demand for new soil fumigants has increased. These compounds can come from a variety of sources, including organic residues. In this study, we identified in the cassava wastewater volatiloma a molecule with potential to be developed as a new fumigant nematicide. Cassava wastewater (20 mL) releases volatile compounds toxic to Meloidogyne javanica second-stage juveniles (J2), causing J2 mortality up to 89%. Through gas chromatography–mass spectrometry, eight compounds were identified in the cassava wastewater volatiloma, with alcohols being the major class. The compounds ethyl butanoate and butyric acid identified in cassava wastewater volatiloma were selected for in vitro nematicidal activities and substrate fumigation tests. The lethal concentration predicted LC(50–48 hr) values (effective doses to kill 50% of M. javanica J2 population after 48 h of exposure) were 172.6 μg ∙ mL(-)(1) and 301.2 μg ∙ mL(-)(1) for butyric acid and ethyl butanoate, respectively. In a pot assay, the application of butyric acid and ethyl butanoate as a soil fumigant, at a dose of 0.5 mL ∙ kg(-)(1) substrate, significantly (P < 0.05) decreased M. javanica infectivity and reproduction compared to the negative control (water). However, ethyl butanoate proved to be a more efficient soil fumigant (P < 0.05) than butyric acid, as its application reduced the number of galls and eggs to the level of the commercial fumigant Dazomet. This study is the first to demonstrate the potential of ethyl butanoate as a soil fumigant against M. javanica.
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spelling pubmed-95834352022-11-03 Ethyl Butanoate, Constituent of Cassava Wastewater Volatiloma, a Potential Soil Fumigant Against Meloidogyne Javanica de Souza, Simone Ribeiro Campos, Vicente Paulo de Paula, Letícia Lopes Pedroso, Marcio Pozzobon Terra, Willian César J Nematol Research Paper As a result of more restrictive legislation regarding the use of pesticides, over the last two decades, the demand for new soil fumigants has increased. These compounds can come from a variety of sources, including organic residues. In this study, we identified in the cassava wastewater volatiloma a molecule with potential to be developed as a new fumigant nematicide. Cassava wastewater (20 mL) releases volatile compounds toxic to Meloidogyne javanica second-stage juveniles (J2), causing J2 mortality up to 89%. Through gas chromatography–mass spectrometry, eight compounds were identified in the cassava wastewater volatiloma, with alcohols being the major class. The compounds ethyl butanoate and butyric acid identified in cassava wastewater volatiloma were selected for in vitro nematicidal activities and substrate fumigation tests. The lethal concentration predicted LC(50–48 hr) values (effective doses to kill 50% of M. javanica J2 population after 48 h of exposure) were 172.6 μg ∙ mL(-)(1) and 301.2 μg ∙ mL(-)(1) for butyric acid and ethyl butanoate, respectively. In a pot assay, the application of butyric acid and ethyl butanoate as a soil fumigant, at a dose of 0.5 mL ∙ kg(-)(1) substrate, significantly (P < 0.05) decreased M. javanica infectivity and reproduction compared to the negative control (water). However, ethyl butanoate proved to be a more efficient soil fumigant (P < 0.05) than butyric acid, as its application reduced the number of galls and eggs to the level of the commercial fumigant Dazomet. This study is the first to demonstrate the potential of ethyl butanoate as a soil fumigant against M. javanica. Sciendo 2022-09-14 /pmc/articles/PMC9583435/ /pubmed/36338428 http://dx.doi.org/10.2478/jofnem-2022-0031 Text en © 2022 de Souza et al. published by Sciendo https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License.
spellingShingle Research Paper
de Souza, Simone Ribeiro
Campos, Vicente Paulo
de Paula, Letícia Lopes
Pedroso, Marcio Pozzobon
Terra, Willian César
Ethyl Butanoate, Constituent of Cassava Wastewater Volatiloma, a Potential Soil Fumigant Against Meloidogyne Javanica
title Ethyl Butanoate, Constituent of Cassava Wastewater Volatiloma, a Potential Soil Fumigant Against Meloidogyne Javanica
title_full Ethyl Butanoate, Constituent of Cassava Wastewater Volatiloma, a Potential Soil Fumigant Against Meloidogyne Javanica
title_fullStr Ethyl Butanoate, Constituent of Cassava Wastewater Volatiloma, a Potential Soil Fumigant Against Meloidogyne Javanica
title_full_unstemmed Ethyl Butanoate, Constituent of Cassava Wastewater Volatiloma, a Potential Soil Fumigant Against Meloidogyne Javanica
title_short Ethyl Butanoate, Constituent of Cassava Wastewater Volatiloma, a Potential Soil Fumigant Against Meloidogyne Javanica
title_sort ethyl butanoate, constituent of cassava wastewater volatiloma, a potential soil fumigant against meloidogyne javanica
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9583435/
https://www.ncbi.nlm.nih.gov/pubmed/36338428
http://dx.doi.org/10.2478/jofnem-2022-0031
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