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Alternaria host-specific (HSTs) toxins: An overview of chemical characterization, target sites, regulation and their toxic effects

Alternaria causes pathogenic disease on various economically important crops having saprophytic to endophytic lifecycle. Pathogenic fungi of Alternaria species produce many primary and secondary metabolites (SMs). Alternaria species produce more than 70 mycotoxins. Several species of Alternaria prod...

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Autores principales: Meena, Mukesh, Samal, Swarnmala
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6684332/
https://www.ncbi.nlm.nih.gov/pubmed/31406682
http://dx.doi.org/10.1016/j.toxrep.2019.06.021
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author Meena, Mukesh
Samal, Swarnmala
author_facet Meena, Mukesh
Samal, Swarnmala
author_sort Meena, Mukesh
collection PubMed
description Alternaria causes pathogenic disease on various economically important crops having saprophytic to endophytic lifecycle. Pathogenic fungi of Alternaria species produce many primary and secondary metabolites (SMs). Alternaria species produce more than 70 mycotoxins. Several species of Alternaria produce various phytotoxins that are host-specific (HSTs) and non-host-specific (nHSTs). These toxins have various negative impacts on cell organelles including chloroplast, mitochondria, plasma membrane, nucleus, Golgi bodies, etc. Non-host-specific toxins such as tentoxin (TEN), Alternaric acid, alternariol (AOH), alternariol 9-monomethyl ether (AME), brefeldin A (dehydro-), Alternuene (ALT), Altertoxin-I, Altertoxin-II, Altertoxin-III, zinniol, tenuazonic acid (TeA), curvularin and alterotoxin (ATX) I, II, III are known toxins produced by Alternaria species. In other hand, Alternaria species produce numerous HSTs such as AK-, AF-, ACT-, AM-, AAL- and ACR-toxin, maculosin, destruxin A, B, etc. are host-specific and classified into different family groups. These mycotoxins are low molecular weight secondary metabolites with various chemical structures. All the HSTs have different mode of actions, biochemical reactions, and signaling mechanisms to causes diseases in the host plants. These HSTs have devastating effects on host plant tissues by affecting biochemical and genetic modifications. Host-specific mycotoxins such as AK-toxin, AF-toxin, and AC-toxin have the devastating effect on plants which causes DNA breakage, cytotoxic, apoptotic cell death, interrupting plant physiology by mitochondrial oxidative phosphorylation and affect membrane permeability. This article will elucidate an understanding of the disease mechanism caused by several Alternaria HSTs on host plants and also the pathways of the toxins and how they caused disease in plants.
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spelling pubmed-66843322019-08-12 Alternaria host-specific (HSTs) toxins: An overview of chemical characterization, target sites, regulation and their toxic effects Meena, Mukesh Samal, Swarnmala Toxicol Rep Article Alternaria causes pathogenic disease on various economically important crops having saprophytic to endophytic lifecycle. Pathogenic fungi of Alternaria species produce many primary and secondary metabolites (SMs). Alternaria species produce more than 70 mycotoxins. Several species of Alternaria produce various phytotoxins that are host-specific (HSTs) and non-host-specific (nHSTs). These toxins have various negative impacts on cell organelles including chloroplast, mitochondria, plasma membrane, nucleus, Golgi bodies, etc. Non-host-specific toxins such as tentoxin (TEN), Alternaric acid, alternariol (AOH), alternariol 9-monomethyl ether (AME), brefeldin A (dehydro-), Alternuene (ALT), Altertoxin-I, Altertoxin-II, Altertoxin-III, zinniol, tenuazonic acid (TeA), curvularin and alterotoxin (ATX) I, II, III are known toxins produced by Alternaria species. In other hand, Alternaria species produce numerous HSTs such as AK-, AF-, ACT-, AM-, AAL- and ACR-toxin, maculosin, destruxin A, B, etc. are host-specific and classified into different family groups. These mycotoxins are low molecular weight secondary metabolites with various chemical structures. All the HSTs have different mode of actions, biochemical reactions, and signaling mechanisms to causes diseases in the host plants. These HSTs have devastating effects on host plant tissues by affecting biochemical and genetic modifications. Host-specific mycotoxins such as AK-toxin, AF-toxin, and AC-toxin have the devastating effect on plants which causes DNA breakage, cytotoxic, apoptotic cell death, interrupting plant physiology by mitochondrial oxidative phosphorylation and affect membrane permeability. This article will elucidate an understanding of the disease mechanism caused by several Alternaria HSTs on host plants and also the pathways of the toxins and how they caused disease in plants. Elsevier 2019-07-17 /pmc/articles/PMC6684332/ /pubmed/31406682 http://dx.doi.org/10.1016/j.toxrep.2019.06.021 Text en © 2019 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Meena, Mukesh
Samal, Swarnmala
Alternaria host-specific (HSTs) toxins: An overview of chemical characterization, target sites, regulation and their toxic effects
title Alternaria host-specific (HSTs) toxins: An overview of chemical characterization, target sites, regulation and their toxic effects
title_full Alternaria host-specific (HSTs) toxins: An overview of chemical characterization, target sites, regulation and their toxic effects
title_fullStr Alternaria host-specific (HSTs) toxins: An overview of chemical characterization, target sites, regulation and their toxic effects
title_full_unstemmed Alternaria host-specific (HSTs) toxins: An overview of chemical characterization, target sites, regulation and their toxic effects
title_short Alternaria host-specific (HSTs) toxins: An overview of chemical characterization, target sites, regulation and their toxic effects
title_sort alternaria host-specific (hsts) toxins: an overview of chemical characterization, target sites, regulation and their toxic effects
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6684332/
https://www.ncbi.nlm.nih.gov/pubmed/31406682
http://dx.doi.org/10.1016/j.toxrep.2019.06.021
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