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The hemibiotrophic cacao pathogen Moniliophthora perniciosa depends on a mitochondrial alternative oxidase for biotrophic development

The tropical pathogen Moniliophthora perniciosa causes witches’ broom disease in cacao. As a hemibiotrophic fungus, it initially colonizes the living host tissues (biotrophic phase), and later grows over the dead plant (necrotrophic phase). Little is known about the mechanisms that promote these dis...

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Autores principales: Thomazella, Daniela P T, Teixeira, Paulo José P L, Oliveira, Halley C, Saviani, Elzira E, Rincones, Johana, Toni, Isabella M, Reis, Osvaldo, Garcia, Odalys, Meinhardt, Lyndel W, Salgado, Ione, Pereira, Gonçalo A G
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3415677/
https://www.ncbi.nlm.nih.gov/pubmed/22443281
http://dx.doi.org/10.1111/j.1469-8137.2012.04119.x
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author Thomazella, Daniela P T
Teixeira, Paulo José P L
Oliveira, Halley C
Saviani, Elzira E
Rincones, Johana
Toni, Isabella M
Reis, Osvaldo
Garcia, Odalys
Meinhardt, Lyndel W
Salgado, Ione
Pereira, Gonçalo A G
author_facet Thomazella, Daniela P T
Teixeira, Paulo José P L
Oliveira, Halley C
Saviani, Elzira E
Rincones, Johana
Toni, Isabella M
Reis, Osvaldo
Garcia, Odalys
Meinhardt, Lyndel W
Salgado, Ione
Pereira, Gonçalo A G
author_sort Thomazella, Daniela P T
collection PubMed
description The tropical pathogen Moniliophthora perniciosa causes witches’ broom disease in cacao. As a hemibiotrophic fungus, it initially colonizes the living host tissues (biotrophic phase), and later grows over the dead plant (necrotrophic phase). Little is known about the mechanisms that promote these distinct fungal phases or mediate the transition between them. An alternative oxidase gene (Mp-aox) was identified in the M. perniciosa genome and its expression was analyzed througout the fungal life cycle. In addition, the effects of inhibitors of the cytochrome-dependent respiratory chain (CRC) and alternative oxidase (AOX) were evaluated on the in vitro development of M. perniciosa. Larger numbers of Mp-aox transcripts were observed in the biotrophic hyphae, which accordingly showed elevated sensitivity to AOX inhibitors. More importantly, the inhibition of CRC prevented the transition from the biotrophic to the necrotrophic phase, and the combined use of a CRC and AOX inhibitor completely halted fungal growth. On the basis of these results, a novel mechanism is presented in which AOX plays a role in the biotrophic development of M. perniciosa and regulates the transition to its necrotrophic stage. Strikingly, this model correlates well with the infection strategy of animal pathogens, particularly Trypanosoma brucei, which uses AOX as a strategy for pathogenicity.
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spelling pubmed-34156772012-08-14 The hemibiotrophic cacao pathogen Moniliophthora perniciosa depends on a mitochondrial alternative oxidase for biotrophic development Thomazella, Daniela P T Teixeira, Paulo José P L Oliveira, Halley C Saviani, Elzira E Rincones, Johana Toni, Isabella M Reis, Osvaldo Garcia, Odalys Meinhardt, Lyndel W Salgado, Ione Pereira, Gonçalo A G New Phytol Research The tropical pathogen Moniliophthora perniciosa causes witches’ broom disease in cacao. As a hemibiotrophic fungus, it initially colonizes the living host tissues (biotrophic phase), and later grows over the dead plant (necrotrophic phase). Little is known about the mechanisms that promote these distinct fungal phases or mediate the transition between them. An alternative oxidase gene (Mp-aox) was identified in the M. perniciosa genome and its expression was analyzed througout the fungal life cycle. In addition, the effects of inhibitors of the cytochrome-dependent respiratory chain (CRC) and alternative oxidase (AOX) were evaluated on the in vitro development of M. perniciosa. Larger numbers of Mp-aox transcripts were observed in the biotrophic hyphae, which accordingly showed elevated sensitivity to AOX inhibitors. More importantly, the inhibition of CRC prevented the transition from the biotrophic to the necrotrophic phase, and the combined use of a CRC and AOX inhibitor completely halted fungal growth. On the basis of these results, a novel mechanism is presented in which AOX plays a role in the biotrophic development of M. perniciosa and regulates the transition to its necrotrophic stage. Strikingly, this model correlates well with the infection strategy of animal pathogens, particularly Trypanosoma brucei, which uses AOX as a strategy for pathogenicity. Blackwell Publishing Ltd 2012-06 /pmc/articles/PMC3415677/ /pubmed/22443281 http://dx.doi.org/10.1111/j.1469-8137.2012.04119.x Text en © 2012 The Authors. New Phytologist © 2012 New Phytologist Trust http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Terms and Conditions set out at http://wileyonlinelibrary.com/onlineopen#OnlineOpen_Terms
spellingShingle Research
Thomazella, Daniela P T
Teixeira, Paulo José P L
Oliveira, Halley C
Saviani, Elzira E
Rincones, Johana
Toni, Isabella M
Reis, Osvaldo
Garcia, Odalys
Meinhardt, Lyndel W
Salgado, Ione
Pereira, Gonçalo A G
The hemibiotrophic cacao pathogen Moniliophthora perniciosa depends on a mitochondrial alternative oxidase for biotrophic development
title The hemibiotrophic cacao pathogen Moniliophthora perniciosa depends on a mitochondrial alternative oxidase for biotrophic development
title_full The hemibiotrophic cacao pathogen Moniliophthora perniciosa depends on a mitochondrial alternative oxidase for biotrophic development
title_fullStr The hemibiotrophic cacao pathogen Moniliophthora perniciosa depends on a mitochondrial alternative oxidase for biotrophic development
title_full_unstemmed The hemibiotrophic cacao pathogen Moniliophthora perniciosa depends on a mitochondrial alternative oxidase for biotrophic development
title_short The hemibiotrophic cacao pathogen Moniliophthora perniciosa depends on a mitochondrial alternative oxidase for biotrophic development
title_sort hemibiotrophic cacao pathogen moniliophthora perniciosa depends on a mitochondrial alternative oxidase for biotrophic development
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3415677/
https://www.ncbi.nlm.nih.gov/pubmed/22443281
http://dx.doi.org/10.1111/j.1469-8137.2012.04119.x
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