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Antifungal and anti-mycotoxigenic activity of selected South African medicinal plants species

Antifungal and anti-mycotoxigenic activity of 25 acetone leaf extracts of South African medicinal plants with potent antioxidant activity were investigated against three phytopathogenic fungal strains. The extracts exhibited varying degrees of in vitro anti-mycotoxigenic effect against Fusarium vert...

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Autores principales: Dikhoba, P.M., Mongalo, N.I., Elgorashi, E.E., Makhafola, T.J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6806395/
https://www.ncbi.nlm.nih.gov/pubmed/31692684
http://dx.doi.org/10.1016/j.heliyon.2019.e02668
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author Dikhoba, P.M.
Mongalo, N.I.
Elgorashi, E.E.
Makhafola, T.J.
author_facet Dikhoba, P.M.
Mongalo, N.I.
Elgorashi, E.E.
Makhafola, T.J.
author_sort Dikhoba, P.M.
collection PubMed
description Antifungal and anti-mycotoxigenic activity of 25 acetone leaf extracts of South African medicinal plants with potent antioxidant activity were investigated against three phytopathogenic fungal strains. The extracts exhibited varying degrees of in vitro anti-mycotoxigenic effect against Fusarium verticillioides, Aspergillus flavus and Aspergillus ochraceous. Markhamia obtusifolia (Baker) Sprague exhibited the lowest minimum inhibitory concentration (MIC) values as low as 0.08 mg/ml against Aspergillus flavus and Furasium verticilloides at both 24 and 48 hr incubation period, while Curtisia dentata exhibited similar MIC value against Aspergillus ochraceous. Curtisia dentata further yielded the highest total activity of 1583 ml/g against Aspergillus ochraceous at 24 and 48 hr incubation period. In the mycelial growth inhibition (MGI) evaluation, Fusarium verticilloides was more sensitive to plants extracts, while Kirkia wilmsii exhibited highest MGI of 50.08% against Fusarium verticilloides on the 6(th) day of incubation. Five acetone extracts from Acokanthora oppositifolia, Bauhinia galpinii, Combretum caffrum, Ricinus communis and Solanum aculeastrum exhibited lowest IC(50) value of 0.01 mg/ml against (2,2’-azinobis-3-ethylbenzthiazoline-6-suphonic acid (ABTS). Curtisia dentata and Markhamia obtusifolia extracts were further subjected to gas chromatography mass-spectrophotometry (GC-MS) analysis. Curtisia dentata revealed the presence of triterpenoid compounds, β-amyrin (53.30%) and α-amyrin (6.42%), while Markhamia obtusifolia yielded the presence of neophytadiene (4.38%) and palmitic acid (3.61%) The results suggest that natural products from plants may well be used as possible substitutes for synthetic fungicides. Given the antifungal and antioxidant potential of the selected plants, they may have potential as possible leads for the development of biofungicides that may well prevent oxidation related food spoilage.
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spelling pubmed-68063952019-11-05 Antifungal and anti-mycotoxigenic activity of selected South African medicinal plants species Dikhoba, P.M. Mongalo, N.I. Elgorashi, E.E. Makhafola, T.J. Heliyon Article Antifungal and anti-mycotoxigenic activity of 25 acetone leaf extracts of South African medicinal plants with potent antioxidant activity were investigated against three phytopathogenic fungal strains. The extracts exhibited varying degrees of in vitro anti-mycotoxigenic effect against Fusarium verticillioides, Aspergillus flavus and Aspergillus ochraceous. Markhamia obtusifolia (Baker) Sprague exhibited the lowest minimum inhibitory concentration (MIC) values as low as 0.08 mg/ml against Aspergillus flavus and Furasium verticilloides at both 24 and 48 hr incubation period, while Curtisia dentata exhibited similar MIC value against Aspergillus ochraceous. Curtisia dentata further yielded the highest total activity of 1583 ml/g against Aspergillus ochraceous at 24 and 48 hr incubation period. In the mycelial growth inhibition (MGI) evaluation, Fusarium verticilloides was more sensitive to plants extracts, while Kirkia wilmsii exhibited highest MGI of 50.08% against Fusarium verticilloides on the 6(th) day of incubation. Five acetone extracts from Acokanthora oppositifolia, Bauhinia galpinii, Combretum caffrum, Ricinus communis and Solanum aculeastrum exhibited lowest IC(50) value of 0.01 mg/ml against (2,2’-azinobis-3-ethylbenzthiazoline-6-suphonic acid (ABTS). Curtisia dentata and Markhamia obtusifolia extracts were further subjected to gas chromatography mass-spectrophotometry (GC-MS) analysis. Curtisia dentata revealed the presence of triterpenoid compounds, β-amyrin (53.30%) and α-amyrin (6.42%), while Markhamia obtusifolia yielded the presence of neophytadiene (4.38%) and palmitic acid (3.61%) The results suggest that natural products from plants may well be used as possible substitutes for synthetic fungicides. Given the antifungal and antioxidant potential of the selected plants, they may have potential as possible leads for the development of biofungicides that may well prevent oxidation related food spoilage. Elsevier 2019-10-17 /pmc/articles/PMC6806395/ /pubmed/31692684 http://dx.doi.org/10.1016/j.heliyon.2019.e02668 Text en © 2019 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Dikhoba, P.M.
Mongalo, N.I.
Elgorashi, E.E.
Makhafola, T.J.
Antifungal and anti-mycotoxigenic activity of selected South African medicinal plants species
title Antifungal and anti-mycotoxigenic activity of selected South African medicinal plants species
title_full Antifungal and anti-mycotoxigenic activity of selected South African medicinal plants species
title_fullStr Antifungal and anti-mycotoxigenic activity of selected South African medicinal plants species
title_full_unstemmed Antifungal and anti-mycotoxigenic activity of selected South African medicinal plants species
title_short Antifungal and anti-mycotoxigenic activity of selected South African medicinal plants species
title_sort antifungal and anti-mycotoxigenic activity of selected south african medicinal plants species
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6806395/
https://www.ncbi.nlm.nih.gov/pubmed/31692684
http://dx.doi.org/10.1016/j.heliyon.2019.e02668
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