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Inhibitory Effects of Respiration Inhibitors on Aflatoxin Production

Aflatoxin production inhibitors, which do not inhibit the growth of aflatoxigenic fungi, may be used to control aflatoxin without incurring a rapid spread of resistant strains. A respiration inhibitor that inhibits aflatoxin production was identified during a screening process for natural, aflatoxin...

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Autores principales: Sakuda, Shohei, Prabowo, Diyan Febri, Takagi, Keiko, Shiomi, Kazuro, Mori, Mihoko, Ōmura, Satoshi, Nagasawa, Hiromichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4014728/
https://www.ncbi.nlm.nih.gov/pubmed/24674936
http://dx.doi.org/10.3390/toxins6041193
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author Sakuda, Shohei
Prabowo, Diyan Febri
Takagi, Keiko
Shiomi, Kazuro
Mori, Mihoko
Ōmura, Satoshi
Nagasawa, Hiromichi
author_facet Sakuda, Shohei
Prabowo, Diyan Febri
Takagi, Keiko
Shiomi, Kazuro
Mori, Mihoko
Ōmura, Satoshi
Nagasawa, Hiromichi
author_sort Sakuda, Shohei
collection PubMed
description Aflatoxin production inhibitors, which do not inhibit the growth of aflatoxigenic fungi, may be used to control aflatoxin without incurring a rapid spread of resistant strains. A respiration inhibitor that inhibits aflatoxin production was identified during a screening process for natural, aflatoxin-production inhibitors. This prompted us to evaluate respiration inhibitors as potential aflatoxin control agents. The inhibitory activities of four natural inhibitors, seven synthetic miticides, and nine synthetic fungicides were evaluated on aflatoxin production in Aspergillus parasiticus. All of the natural inhibitors (rotenone, siccanin, aptenin A5, and antimycin A) inhibited fungal aflatoxin production with IC(50) values around 10 µM. Among the synthetic miticides, pyridaben, fluacrypyrim, and tolfenpyrad exhibited strong inhibitory activities with IC(50) values less than 0.2 µM, whereas cyflumetofen did not show significant inhibitory activity. Of the synthetic fungicides, boscalid, pyribencarb, azoxystrobin, pyraclostrobin, and kresoxim-methyl demonstrated strong inhibitory activities, with IC(50) values less than 0.5 µM. Fungal growth was not significantly affected by any of the inhibitors tested at concentrations used. There was no correlation observed between the targets of respiration inhibitors (complexes I, II, and III) and their IC(50) values for aflatoxin-production inhibitory activity. This study suggests that respiration inhibitors, including commonly used pesticides, are useful for aflatoxin control.
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spelling pubmed-40147282014-05-09 Inhibitory Effects of Respiration Inhibitors on Aflatoxin Production Sakuda, Shohei Prabowo, Diyan Febri Takagi, Keiko Shiomi, Kazuro Mori, Mihoko Ōmura, Satoshi Nagasawa, Hiromichi Toxins (Basel) Article Aflatoxin production inhibitors, which do not inhibit the growth of aflatoxigenic fungi, may be used to control aflatoxin without incurring a rapid spread of resistant strains. A respiration inhibitor that inhibits aflatoxin production was identified during a screening process for natural, aflatoxin-production inhibitors. This prompted us to evaluate respiration inhibitors as potential aflatoxin control agents. The inhibitory activities of four natural inhibitors, seven synthetic miticides, and nine synthetic fungicides were evaluated on aflatoxin production in Aspergillus parasiticus. All of the natural inhibitors (rotenone, siccanin, aptenin A5, and antimycin A) inhibited fungal aflatoxin production with IC(50) values around 10 µM. Among the synthetic miticides, pyridaben, fluacrypyrim, and tolfenpyrad exhibited strong inhibitory activities with IC(50) values less than 0.2 µM, whereas cyflumetofen did not show significant inhibitory activity. Of the synthetic fungicides, boscalid, pyribencarb, azoxystrobin, pyraclostrobin, and kresoxim-methyl demonstrated strong inhibitory activities, with IC(50) values less than 0.5 µM. Fungal growth was not significantly affected by any of the inhibitors tested at concentrations used. There was no correlation observed between the targets of respiration inhibitors (complexes I, II, and III) and their IC(50) values for aflatoxin-production inhibitory activity. This study suggests that respiration inhibitors, including commonly used pesticides, are useful for aflatoxin control. MDPI 2014-03-26 /pmc/articles/PMC4014728/ /pubmed/24674936 http://dx.doi.org/10.3390/toxins6041193 Text en © 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Sakuda, Shohei
Prabowo, Diyan Febri
Takagi, Keiko
Shiomi, Kazuro
Mori, Mihoko
Ōmura, Satoshi
Nagasawa, Hiromichi
Inhibitory Effects of Respiration Inhibitors on Aflatoxin Production
title Inhibitory Effects of Respiration Inhibitors on Aflatoxin Production
title_full Inhibitory Effects of Respiration Inhibitors on Aflatoxin Production
title_fullStr Inhibitory Effects of Respiration Inhibitors on Aflatoxin Production
title_full_unstemmed Inhibitory Effects of Respiration Inhibitors on Aflatoxin Production
title_short Inhibitory Effects of Respiration Inhibitors on Aflatoxin Production
title_sort inhibitory effects of respiration inhibitors on aflatoxin production
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4014728/
https://www.ncbi.nlm.nih.gov/pubmed/24674936
http://dx.doi.org/10.3390/toxins6041193
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