Cargando…

Peroxisomal Alanine: Glyoxylate Aminotransferase AGT1 Is Indispensable for Appressorium Function of the Rice Blast Pathogen, Magnaporthe oryzae

The role of β-oxidation and the glyoxylate cycle in fungal pathogenesis is well documented. However, an ambiguity still remains over their interaction in peroxisomes to facilitate fungal pathogenicity and virulence. In this report, we characterize a gene encoding an alanine, glyoxylate aminotransfer...

Descripción completa

Detalles Bibliográficos
Autores principales: Bhadauria, Vijai, Banniza, Sabine, Vandenberg, Albert, Selvaraj, Gopalan, Wei, Yangdou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3338719/
https://www.ncbi.nlm.nih.gov/pubmed/22558413
http://dx.doi.org/10.1371/journal.pone.0036266
_version_ 1782231248524017664
author Bhadauria, Vijai
Banniza, Sabine
Vandenberg, Albert
Selvaraj, Gopalan
Wei, Yangdou
author_facet Bhadauria, Vijai
Banniza, Sabine
Vandenberg, Albert
Selvaraj, Gopalan
Wei, Yangdou
author_sort Bhadauria, Vijai
collection PubMed
description The role of β-oxidation and the glyoxylate cycle in fungal pathogenesis is well documented. However, an ambiguity still remains over their interaction in peroxisomes to facilitate fungal pathogenicity and virulence. In this report, we characterize a gene encoding an alanine, glyoxylate aminotransferase 1 (AGT1) in Magnaporthe oryzae, the causative agent of rice blast disease, and demonstrate that AGT1 is required for pathogenicity of M. oryzae. Targeted deletion of AGT1 resulted in the failure of penetration via appressoria; therefore, mutants lacking the gene were unable to induce blast symptoms on the hosts rice and barley. This penetration failure may be associated with a disruption in lipid mobilization during conidial germination as turgor generation in the appressorium requires mobilization of lipid reserves from the conidium. Analysis of enhanced green fluorescent protein expression using the transcriptional and translational fusion with the AGT1 promoter and open reading frame, respectively, revealed that AGT1 expressed constitutively in all in vitro grown cell types and during in planta colonization, and localized in peroxisomes. Peroxisomal localization was further confirmed by colocalization with red fluorescent protein fused with the peroxisomal targeting signal 1. Surprisingly, conidia produced by the Δagt1 mutant were unable to form appressoria on artificial inductive surfaces, even after prolonged incubation. When supplemented with nicotinamide adenine dinucleotide (NAD(+))+pyruvate, appressorium formation was restored on an artificial inductive surface. Taken together, our data indicate that AGT1-dependent pyruvate formation by transferring an amino group of alanine to glyoxylate, an intermediate of the glyoxylate cycle is required for lipid mobilization and utilization. This pyruvate can be converted to non-fermentable carbon sources, which may require reoxidation of NADH generated by the β-oxidation of fatty acids to NAD(+) in peroxisomes. Therefore, it may provide a means to maintain redox homeostasis in appressoria.
format Online
Article
Text
id pubmed-3338719
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-33387192012-05-03 Peroxisomal Alanine: Glyoxylate Aminotransferase AGT1 Is Indispensable for Appressorium Function of the Rice Blast Pathogen, Magnaporthe oryzae Bhadauria, Vijai Banniza, Sabine Vandenberg, Albert Selvaraj, Gopalan Wei, Yangdou PLoS One Research Article The role of β-oxidation and the glyoxylate cycle in fungal pathogenesis is well documented. However, an ambiguity still remains over their interaction in peroxisomes to facilitate fungal pathogenicity and virulence. In this report, we characterize a gene encoding an alanine, glyoxylate aminotransferase 1 (AGT1) in Magnaporthe oryzae, the causative agent of rice blast disease, and demonstrate that AGT1 is required for pathogenicity of M. oryzae. Targeted deletion of AGT1 resulted in the failure of penetration via appressoria; therefore, mutants lacking the gene were unable to induce blast symptoms on the hosts rice and barley. This penetration failure may be associated with a disruption in lipid mobilization during conidial germination as turgor generation in the appressorium requires mobilization of lipid reserves from the conidium. Analysis of enhanced green fluorescent protein expression using the transcriptional and translational fusion with the AGT1 promoter and open reading frame, respectively, revealed that AGT1 expressed constitutively in all in vitro grown cell types and during in planta colonization, and localized in peroxisomes. Peroxisomal localization was further confirmed by colocalization with red fluorescent protein fused with the peroxisomal targeting signal 1. Surprisingly, conidia produced by the Δagt1 mutant were unable to form appressoria on artificial inductive surfaces, even after prolonged incubation. When supplemented with nicotinamide adenine dinucleotide (NAD(+))+pyruvate, appressorium formation was restored on an artificial inductive surface. Taken together, our data indicate that AGT1-dependent pyruvate formation by transferring an amino group of alanine to glyoxylate, an intermediate of the glyoxylate cycle is required for lipid mobilization and utilization. This pyruvate can be converted to non-fermentable carbon sources, which may require reoxidation of NADH generated by the β-oxidation of fatty acids to NAD(+) in peroxisomes. Therefore, it may provide a means to maintain redox homeostasis in appressoria. Public Library of Science 2012-04-27 /pmc/articles/PMC3338719/ /pubmed/22558413 http://dx.doi.org/10.1371/journal.pone.0036266 Text en Bhadauria et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bhadauria, Vijai
Banniza, Sabine
Vandenberg, Albert
Selvaraj, Gopalan
Wei, Yangdou
Peroxisomal Alanine: Glyoxylate Aminotransferase AGT1 Is Indispensable for Appressorium Function of the Rice Blast Pathogen, Magnaporthe oryzae
title Peroxisomal Alanine: Glyoxylate Aminotransferase AGT1 Is Indispensable for Appressorium Function of the Rice Blast Pathogen, Magnaporthe oryzae
title_full Peroxisomal Alanine: Glyoxylate Aminotransferase AGT1 Is Indispensable for Appressorium Function of the Rice Blast Pathogen, Magnaporthe oryzae
title_fullStr Peroxisomal Alanine: Glyoxylate Aminotransferase AGT1 Is Indispensable for Appressorium Function of the Rice Blast Pathogen, Magnaporthe oryzae
title_full_unstemmed Peroxisomal Alanine: Glyoxylate Aminotransferase AGT1 Is Indispensable for Appressorium Function of the Rice Blast Pathogen, Magnaporthe oryzae
title_short Peroxisomal Alanine: Glyoxylate Aminotransferase AGT1 Is Indispensable for Appressorium Function of the Rice Blast Pathogen, Magnaporthe oryzae
title_sort peroxisomal alanine: glyoxylate aminotransferase agt1 is indispensable for appressorium function of the rice blast pathogen, magnaporthe oryzae
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3338719/
https://www.ncbi.nlm.nih.gov/pubmed/22558413
http://dx.doi.org/10.1371/journal.pone.0036266
work_keys_str_mv AT bhadauriavijai peroxisomalalanineglyoxylateaminotransferaseagt1isindispensableforappressoriumfunctionofthericeblastpathogenmagnaportheoryzae
AT bannizasabine peroxisomalalanineglyoxylateaminotransferaseagt1isindispensableforappressoriumfunctionofthericeblastpathogenmagnaportheoryzae
AT vandenbergalbert peroxisomalalanineglyoxylateaminotransferaseagt1isindispensableforappressoriumfunctionofthericeblastpathogenmagnaportheoryzae
AT selvarajgopalan peroxisomalalanineglyoxylateaminotransferaseagt1isindispensableforappressoriumfunctionofthericeblastpathogenmagnaportheoryzae
AT weiyangdou peroxisomalalanineglyoxylateaminotransferaseagt1isindispensableforappressoriumfunctionofthericeblastpathogenmagnaportheoryzae