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The Fungal Effector Mlp37347 Alters Plasmodesmata Fluxes and Enhances Susceptibility to Pathogen

Melampsora larici-populina (Mlp) is a devastating pathogen of poplar trees, causing the defoliating poplar leaf rust disease. Genomic studies have revealed that Mlp possesses a repertoire of 1184 small secreted proteins (SSPs), some of them being characterized as candidate effectors. However, how th...

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Autores principales: Rahman, Md. Saifur, Madina, Mst Hur, Plourde, Mélodie B., dos Santos, Karen Cristine Gonçalves, Huang, Xiaoqiang, Zhang, Yang, Laliberté, Jean-François, Germain, Hugo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8228402/
https://www.ncbi.nlm.nih.gov/pubmed/34204123
http://dx.doi.org/10.3390/microorganisms9061232
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author Rahman, Md. Saifur
Madina, Mst Hur
Plourde, Mélodie B.
dos Santos, Karen Cristine Gonçalves
Huang, Xiaoqiang
Zhang, Yang
Laliberté, Jean-François
Germain, Hugo
author_facet Rahman, Md. Saifur
Madina, Mst Hur
Plourde, Mélodie B.
dos Santos, Karen Cristine Gonçalves
Huang, Xiaoqiang
Zhang, Yang
Laliberté, Jean-François
Germain, Hugo
author_sort Rahman, Md. Saifur
collection PubMed
description Melampsora larici-populina (Mlp) is a devastating pathogen of poplar trees, causing the defoliating poplar leaf rust disease. Genomic studies have revealed that Mlp possesses a repertoire of 1184 small secreted proteins (SSPs), some of them being characterized as candidate effectors. However, how they promote virulence is still unclear. This study investigates the candidate effector Mlp37347’s role during infection. We developed a stable Arabidopsis transgenic line expressing Mlp37347 tagged with the green fluorescent protein (GFP). We found that the effector accumulated exclusively at plasmodesmata (PD). Moreover, the presence of the effector at plasmodesmata favors enhanced plasmodesmatal flux and reduced callose deposition. Transcriptome profiling and a gene ontology (GO) analysis of transgenic Arabidopsis plants expressing the effector revealed that the genes involved in glucan catabolic processes are up-regulated. This effector has previously been shown to interact with glutamate decarboxylase 1 (GAD1), and in silico docking analysis supported the strong binding between Mlp37347 and GAD1 in this study. In infection assays, the effector promoted Hyalonoperospora arabidopsidis growth but not bacterial growth. Our investigation suggests that the effector Mlp37347 targets PD in host cells and promotes parasitic growth.
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spelling pubmed-82284022021-06-26 The Fungal Effector Mlp37347 Alters Plasmodesmata Fluxes and Enhances Susceptibility to Pathogen Rahman, Md. Saifur Madina, Mst Hur Plourde, Mélodie B. dos Santos, Karen Cristine Gonçalves Huang, Xiaoqiang Zhang, Yang Laliberté, Jean-François Germain, Hugo Microorganisms Article Melampsora larici-populina (Mlp) is a devastating pathogen of poplar trees, causing the defoliating poplar leaf rust disease. Genomic studies have revealed that Mlp possesses a repertoire of 1184 small secreted proteins (SSPs), some of them being characterized as candidate effectors. However, how they promote virulence is still unclear. This study investigates the candidate effector Mlp37347’s role during infection. We developed a stable Arabidopsis transgenic line expressing Mlp37347 tagged with the green fluorescent protein (GFP). We found that the effector accumulated exclusively at plasmodesmata (PD). Moreover, the presence of the effector at plasmodesmata favors enhanced plasmodesmatal flux and reduced callose deposition. Transcriptome profiling and a gene ontology (GO) analysis of transgenic Arabidopsis plants expressing the effector revealed that the genes involved in glucan catabolic processes are up-regulated. This effector has previously been shown to interact with glutamate decarboxylase 1 (GAD1), and in silico docking analysis supported the strong binding between Mlp37347 and GAD1 in this study. In infection assays, the effector promoted Hyalonoperospora arabidopsidis growth but not bacterial growth. Our investigation suggests that the effector Mlp37347 targets PD in host cells and promotes parasitic growth. MDPI 2021-06-06 /pmc/articles/PMC8228402/ /pubmed/34204123 http://dx.doi.org/10.3390/microorganisms9061232 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rahman, Md. Saifur
Madina, Mst Hur
Plourde, Mélodie B.
dos Santos, Karen Cristine Gonçalves
Huang, Xiaoqiang
Zhang, Yang
Laliberté, Jean-François
Germain, Hugo
The Fungal Effector Mlp37347 Alters Plasmodesmata Fluxes and Enhances Susceptibility to Pathogen
title The Fungal Effector Mlp37347 Alters Plasmodesmata Fluxes and Enhances Susceptibility to Pathogen
title_full The Fungal Effector Mlp37347 Alters Plasmodesmata Fluxes and Enhances Susceptibility to Pathogen
title_fullStr The Fungal Effector Mlp37347 Alters Plasmodesmata Fluxes and Enhances Susceptibility to Pathogen
title_full_unstemmed The Fungal Effector Mlp37347 Alters Plasmodesmata Fluxes and Enhances Susceptibility to Pathogen
title_short The Fungal Effector Mlp37347 Alters Plasmodesmata Fluxes and Enhances Susceptibility to Pathogen
title_sort fungal effector mlp37347 alters plasmodesmata fluxes and enhances susceptibility to pathogen
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8228402/
https://www.ncbi.nlm.nih.gov/pubmed/34204123
http://dx.doi.org/10.3390/microorganisms9061232
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