Rapid Detection of ACTG- and AK-Toxins in Alternaria alternata by LC-ESI-MS/MS Analysis and Antifungal Properties of Citrus Compounds
A methanol-soluble fraction of the dichloromethane extract from the culture broth of A. alternata AT4303 strain afforded the following five known mycotoxins: alternariol, alternariol monomethyl ether, altenusin, altenuene and altertoxin I. A hexane-soluble fraction of the dichloromethane extract yielded the steroids ergosterol and ergosterol peroxide, and alternariol monomethyl ether. The concentrated ethyl acetate extract afforded the nucleoside uridine, uracil and inosine. The micro-extracts obtained from this strain in solid media were analyzed using liquid chromatography-electrospray ionization-tandem mass spectrometry (LC-ESI-MS/MS), and the following five known toxins were identified: ACTG-C, D, E and F and AK-toxin II. The major toxins produced by the tangerine pathotype ACT-toxins appear to be absent in strain AT4303. However, the low concentration of ACT-toxins appears to be responsible for their lack of detection in this study. Some compounds isolated from citrus plants were tested for in vitro activity against this strain. The results indicated that 17.3 µM apigenin-7-O-rutinoside inhibited by 80% conidial germination and appressorium development.
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Sociedade Brasileira de Química
2016
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oai:scielo:S0103-505320160008014932016-08-19Rapid Detection of ACTG- and AK-Toxins in Alternaria alternata by LC-ESI-MS/MS Analysis and Antifungal Properties of Citrus CompoundsPrieto,Kátia R.Medeiros,Lívia S. deIsidoro,Marsele M.Toffano,LeonardoSilva,Maria Fátima G. F. daFernandes,João B.Vieira,Paulo C.Forim,Moacir R.Rodrigues-Filho,EdsonStuart,Rodrigo M.Machado,Marcos A. Alternaria alternata mycotoxins host-selective toxins Citrus A methanol-soluble fraction of the dichloromethane extract from the culture broth of A. alternata AT4303 strain afforded the following five known mycotoxins: alternariol, alternariol monomethyl ether, altenusin, altenuene and altertoxin I. A hexane-soluble fraction of the dichloromethane extract yielded the steroids ergosterol and ergosterol peroxide, and alternariol monomethyl ether. The concentrated ethyl acetate extract afforded the nucleoside uridine, uracil and inosine. The micro-extracts obtained from this strain in solid media were analyzed using liquid chromatography-electrospray ionization-tandem mass spectrometry (LC-ESI-MS/MS), and the following five known toxins were identified: ACTG-C, D, E and F and AK-toxin II. The major toxins produced by the tangerine pathotype ACT-toxins appear to be absent in strain AT4303. However, the low concentration of ACT-toxins appears to be responsible for their lack of detection in this study. Some compounds isolated from citrus plants were tested for in vitro activity against this strain. The results indicated that 17.3 µM apigenin-7-O-rutinoside inhibited by 80% conidial germination and appressorium development.info:eu-repo/semantics/openAccessSociedade Brasileira de QuímicaJournal of the Brazilian Chemical Society v.27 n.8 20162016-08-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S0103-50532016000801493en10.5935/0103-5053.20160195 |
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Prieto,Kátia R. Medeiros,Lívia S. de Isidoro,Marsele M. Toffano,Leonardo Silva,Maria Fátima G. F. da Fernandes,João B. Vieira,Paulo C. Forim,Moacir R. Rodrigues-Filho,Edson Stuart,Rodrigo M. Machado,Marcos A. |
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Prieto,Kátia R. Medeiros,Lívia S. de Isidoro,Marsele M. Toffano,Leonardo Silva,Maria Fátima G. F. da Fernandes,João B. Vieira,Paulo C. Forim,Moacir R. Rodrigues-Filho,Edson Stuart,Rodrigo M. Machado,Marcos A. Rapid Detection of ACTG- and AK-Toxins in Alternaria alternata by LC-ESI-MS/MS Analysis and Antifungal Properties of Citrus Compounds |
author_facet |
Prieto,Kátia R. Medeiros,Lívia S. de Isidoro,Marsele M. Toffano,Leonardo Silva,Maria Fátima G. F. da Fernandes,João B. Vieira,Paulo C. Forim,Moacir R. Rodrigues-Filho,Edson Stuart,Rodrigo M. Machado,Marcos A. |
author_sort |
Prieto,Kátia R. |
title |
Rapid Detection of ACTG- and AK-Toxins in Alternaria alternata by LC-ESI-MS/MS Analysis and Antifungal Properties of Citrus Compounds |
title_short |
Rapid Detection of ACTG- and AK-Toxins in Alternaria alternata by LC-ESI-MS/MS Analysis and Antifungal Properties of Citrus Compounds |
title_full |
Rapid Detection of ACTG- and AK-Toxins in Alternaria alternata by LC-ESI-MS/MS Analysis and Antifungal Properties of Citrus Compounds |
title_fullStr |
Rapid Detection of ACTG- and AK-Toxins in Alternaria alternata by LC-ESI-MS/MS Analysis and Antifungal Properties of Citrus Compounds |
title_full_unstemmed |
Rapid Detection of ACTG- and AK-Toxins in Alternaria alternata by LC-ESI-MS/MS Analysis and Antifungal Properties of Citrus Compounds |
title_sort |
rapid detection of actg- and ak-toxins in alternaria alternata by lc-esi-ms/ms analysis and antifungal properties of citrus compounds |
description |
A methanol-soluble fraction of the dichloromethane extract from the culture broth of A. alternata AT4303 strain afforded the following five known mycotoxins: alternariol, alternariol monomethyl ether, altenusin, altenuene and altertoxin I. A hexane-soluble fraction of the dichloromethane extract yielded the steroids ergosterol and ergosterol peroxide, and alternariol monomethyl ether. The concentrated ethyl acetate extract afforded the nucleoside uridine, uracil and inosine. The micro-extracts obtained from this strain in solid media were analyzed using liquid chromatography-electrospray ionization-tandem mass spectrometry (LC-ESI-MS/MS), and the following five known toxins were identified: ACTG-C, D, E and F and AK-toxin II. The major toxins produced by the tangerine pathotype ACT-toxins appear to be absent in strain AT4303. However, the low concentration of ACT-toxins appears to be responsible for their lack of detection in this study. Some compounds isolated from citrus plants were tested for in vitro activity against this strain. The results indicated that 17.3 µM apigenin-7-O-rutinoside inhibited by 80% conidial germination and appressorium development. |
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Sociedade Brasileira de Química |
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2016 |
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http://old.scielo.br/scielo.php?script=sci_arttext&pid=S0103-50532016000801493 |
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