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Fusarium graminearum DICER-like-dependent sRNAs are required for the suppression of host immune genes and full virulence

In filamentous fungi, gene silencing by RNA interference (RNAi) shapes many biological processes, including pathogenicity. Recently, fungal small RNAs (sRNAs) have been shown to act as effectors that disrupt gene activity in interacting plant hosts, thereby undermining their defence responses. We sh...

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Autores principales: Werner, Bernhard Timo, Koch, Aline, Šečić, Ena, Engelhardt, Jonas, Jelonek, Lukas, Steinbrenner, Jens, Kogel, Karl-Heinz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8341482/
https://www.ncbi.nlm.nih.gov/pubmed/34351929
http://dx.doi.org/10.1371/journal.pone.0252365
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author Werner, Bernhard Timo
Koch, Aline
Šečić, Ena
Engelhardt, Jonas
Jelonek, Lukas
Steinbrenner, Jens
Kogel, Karl-Heinz
author_facet Werner, Bernhard Timo
Koch, Aline
Šečić, Ena
Engelhardt, Jonas
Jelonek, Lukas
Steinbrenner, Jens
Kogel, Karl-Heinz
author_sort Werner, Bernhard Timo
collection PubMed
description In filamentous fungi, gene silencing by RNA interference (RNAi) shapes many biological processes, including pathogenicity. Recently, fungal small RNAs (sRNAs) have been shown to act as effectors that disrupt gene activity in interacting plant hosts, thereby undermining their defence responses. We show here that the devastating mycotoxin-producing ascomycete Fusarium graminearum (Fg) utilizes DICER-like (DCL)-dependent sRNAs to target defence genes in two Poaceae hosts, barley (Hordeum vulgare, Hv) and Brachypodium distachyon (Bd). We identified 104 Fg-sRNAs with sequence homology to host genes that were repressed during interactions of Fg and Hv, while they accumulated in plants infected by the DCL double knock-out (dKO) mutant PH1-dcl1/2. The strength of target gene expression correlated with the abundance of the corresponding Fg-sRNA. Specifically, the abundance of three tRNA-derived fragments (tRFs) targeting immunity-related Ethylene overproducer 1-like 1 (HvEOL1) and three Poaceae orthologues of Arabidopsis thaliana BRI1-associated receptor kinase 1 (HvBAK1, HvSERK2 and BdSERK2) was dependent on fungal DCL. Additionally, RNA-ligase-mediated Rapid Amplification of cDNA Ends (RLM-RACE) identified infection-specific degradation products for the three barley gene transcripts, consistent with the possibility that tRFs contribute to fungal virulence via targeted gene silencing.
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spelling pubmed-83414822021-08-06 Fusarium graminearum DICER-like-dependent sRNAs are required for the suppression of host immune genes and full virulence Werner, Bernhard Timo Koch, Aline Šečić, Ena Engelhardt, Jonas Jelonek, Lukas Steinbrenner, Jens Kogel, Karl-Heinz PLoS One Research Article In filamentous fungi, gene silencing by RNA interference (RNAi) shapes many biological processes, including pathogenicity. Recently, fungal small RNAs (sRNAs) have been shown to act as effectors that disrupt gene activity in interacting plant hosts, thereby undermining their defence responses. We show here that the devastating mycotoxin-producing ascomycete Fusarium graminearum (Fg) utilizes DICER-like (DCL)-dependent sRNAs to target defence genes in two Poaceae hosts, barley (Hordeum vulgare, Hv) and Brachypodium distachyon (Bd). We identified 104 Fg-sRNAs with sequence homology to host genes that were repressed during interactions of Fg and Hv, while they accumulated in plants infected by the DCL double knock-out (dKO) mutant PH1-dcl1/2. The strength of target gene expression correlated with the abundance of the corresponding Fg-sRNA. Specifically, the abundance of three tRNA-derived fragments (tRFs) targeting immunity-related Ethylene overproducer 1-like 1 (HvEOL1) and three Poaceae orthologues of Arabidopsis thaliana BRI1-associated receptor kinase 1 (HvBAK1, HvSERK2 and BdSERK2) was dependent on fungal DCL. Additionally, RNA-ligase-mediated Rapid Amplification of cDNA Ends (RLM-RACE) identified infection-specific degradation products for the three barley gene transcripts, consistent with the possibility that tRFs contribute to fungal virulence via targeted gene silencing. Public Library of Science 2021-08-05 /pmc/articles/PMC8341482/ /pubmed/34351929 http://dx.doi.org/10.1371/journal.pone.0252365 Text en © 2021 Werner et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Werner, Bernhard Timo
Koch, Aline
Šečić, Ena
Engelhardt, Jonas
Jelonek, Lukas
Steinbrenner, Jens
Kogel, Karl-Heinz
Fusarium graminearum DICER-like-dependent sRNAs are required for the suppression of host immune genes and full virulence
title Fusarium graminearum DICER-like-dependent sRNAs are required for the suppression of host immune genes and full virulence
title_full Fusarium graminearum DICER-like-dependent sRNAs are required for the suppression of host immune genes and full virulence
title_fullStr Fusarium graminearum DICER-like-dependent sRNAs are required for the suppression of host immune genes and full virulence
title_full_unstemmed Fusarium graminearum DICER-like-dependent sRNAs are required for the suppression of host immune genes and full virulence
title_short Fusarium graminearum DICER-like-dependent sRNAs are required for the suppression of host immune genes and full virulence
title_sort fusarium graminearum dicer-like-dependent srnas are required for the suppression of host immune genes and full virulence
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8341482/
https://www.ncbi.nlm.nih.gov/pubmed/34351929
http://dx.doi.org/10.1371/journal.pone.0252365
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