Cargando…

The MAPK kinase BcMkk1 suppresses oxalic acid biosynthesis via impeding phosphorylation of BcRim15 by BcSch9 in Botrytis cinerea

The mitogen-activated protein kinase (MAPK) cassette of the cell wall integrity (CWI) pathway is primarily responsible for orchestrating changes of cell wall. However, functions of this cassette in other cellular processes are not well understood. Here, we found that the Botrytis cinerea mutant of M...

Descripción completa

Detalles Bibliográficos
Autores principales: Yin, Yanni, Wu, Sisi, Chui, Chaonan, Ma, Tianling, Jiang, Huixian, Hahn, Matthias, Ma, Zhonghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6136818/
https://www.ncbi.nlm.nih.gov/pubmed/30212570
http://dx.doi.org/10.1371/journal.ppat.1007285
_version_ 1783355077982945280
author Yin, Yanni
Wu, Sisi
Chui, Chaonan
Ma, Tianling
Jiang, Huixian
Hahn, Matthias
Ma, Zhonghua
author_facet Yin, Yanni
Wu, Sisi
Chui, Chaonan
Ma, Tianling
Jiang, Huixian
Hahn, Matthias
Ma, Zhonghua
author_sort Yin, Yanni
collection PubMed
description The mitogen-activated protein kinase (MAPK) cassette of the cell wall integrity (CWI) pathway is primarily responsible for orchestrating changes of cell wall. However, functions of this cassette in other cellular processes are not well understood. Here, we found that the Botrytis cinerea mutant of MAPK kinase (BcMkk1) displays more serious defects in mycelial growth, conidiation, responses to cell wall and oxidative stresses, but possesses less reduced virulence than the mutants of its upstream (BcBck1) and downstream (BcBmp3) kinases. Interestingly, BcMkk1, but not BcBck1 and BcBmp3, negatively regulates production of oxalic acid (OA) and activity of extracellular hydrolases (EHs) that are proposed to be virulence factors of B. cinerea. Moreover, we obtained evidence that BcMkk1 negatively controls OA production via impeding phosphorylation of the Per-Arnt-Sim (PAS) kinase BcRim15 by the Ser/Thr kinase BcSch9. In addition, the fungal Pro40 homolog BcPro40 was found to interact simultaneously with three MAPKs, implying that BcPro40 is a scaffold protein of the CWI pathway in B. cinerea. Taken together, results of this study reveal that BcMkk1 negatively modulates virulence via suppressing OA biosynthesis in B. cinerea, which provides novel insight into conserved and species-specific functions of the MAPK kinase in fungi.
format Online
Article
Text
id pubmed-6136818
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-61368182018-09-27 The MAPK kinase BcMkk1 suppresses oxalic acid biosynthesis via impeding phosphorylation of BcRim15 by BcSch9 in Botrytis cinerea Yin, Yanni Wu, Sisi Chui, Chaonan Ma, Tianling Jiang, Huixian Hahn, Matthias Ma, Zhonghua PLoS Pathog Research Article The mitogen-activated protein kinase (MAPK) cassette of the cell wall integrity (CWI) pathway is primarily responsible for orchestrating changes of cell wall. However, functions of this cassette in other cellular processes are not well understood. Here, we found that the Botrytis cinerea mutant of MAPK kinase (BcMkk1) displays more serious defects in mycelial growth, conidiation, responses to cell wall and oxidative stresses, but possesses less reduced virulence than the mutants of its upstream (BcBck1) and downstream (BcBmp3) kinases. Interestingly, BcMkk1, but not BcBck1 and BcBmp3, negatively regulates production of oxalic acid (OA) and activity of extracellular hydrolases (EHs) that are proposed to be virulence factors of B. cinerea. Moreover, we obtained evidence that BcMkk1 negatively controls OA production via impeding phosphorylation of the Per-Arnt-Sim (PAS) kinase BcRim15 by the Ser/Thr kinase BcSch9. In addition, the fungal Pro40 homolog BcPro40 was found to interact simultaneously with three MAPKs, implying that BcPro40 is a scaffold protein of the CWI pathway in B. cinerea. Taken together, results of this study reveal that BcMkk1 negatively modulates virulence via suppressing OA biosynthesis in B. cinerea, which provides novel insight into conserved and species-specific functions of the MAPK kinase in fungi. Public Library of Science 2018-09-13 /pmc/articles/PMC6136818/ /pubmed/30212570 http://dx.doi.org/10.1371/journal.ppat.1007285 Text en © 2018 Yin 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 (http://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
Yin, Yanni
Wu, Sisi
Chui, Chaonan
Ma, Tianling
Jiang, Huixian
Hahn, Matthias
Ma, Zhonghua
The MAPK kinase BcMkk1 suppresses oxalic acid biosynthesis via impeding phosphorylation of BcRim15 by BcSch9 in Botrytis cinerea
title The MAPK kinase BcMkk1 suppresses oxalic acid biosynthesis via impeding phosphorylation of BcRim15 by BcSch9 in Botrytis cinerea
title_full The MAPK kinase BcMkk1 suppresses oxalic acid biosynthesis via impeding phosphorylation of BcRim15 by BcSch9 in Botrytis cinerea
title_fullStr The MAPK kinase BcMkk1 suppresses oxalic acid biosynthesis via impeding phosphorylation of BcRim15 by BcSch9 in Botrytis cinerea
title_full_unstemmed The MAPK kinase BcMkk1 suppresses oxalic acid biosynthesis via impeding phosphorylation of BcRim15 by BcSch9 in Botrytis cinerea
title_short The MAPK kinase BcMkk1 suppresses oxalic acid biosynthesis via impeding phosphorylation of BcRim15 by BcSch9 in Botrytis cinerea
title_sort mapk kinase bcmkk1 suppresses oxalic acid biosynthesis via impeding phosphorylation of bcrim15 by bcsch9 in botrytis cinerea
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6136818/
https://www.ncbi.nlm.nih.gov/pubmed/30212570
http://dx.doi.org/10.1371/journal.ppat.1007285
work_keys_str_mv AT yinyanni themapkkinasebcmkk1suppressesoxalicacidbiosynthesisviaimpedingphosphorylationofbcrim15bybcsch9inbotrytiscinerea
AT wusisi themapkkinasebcmkk1suppressesoxalicacidbiosynthesisviaimpedingphosphorylationofbcrim15bybcsch9inbotrytiscinerea
AT chuichaonan themapkkinasebcmkk1suppressesoxalicacidbiosynthesisviaimpedingphosphorylationofbcrim15bybcsch9inbotrytiscinerea
AT matianling themapkkinasebcmkk1suppressesoxalicacidbiosynthesisviaimpedingphosphorylationofbcrim15bybcsch9inbotrytiscinerea
AT jianghuixian themapkkinasebcmkk1suppressesoxalicacidbiosynthesisviaimpedingphosphorylationofbcrim15bybcsch9inbotrytiscinerea
AT hahnmatthias themapkkinasebcmkk1suppressesoxalicacidbiosynthesisviaimpedingphosphorylationofbcrim15bybcsch9inbotrytiscinerea
AT mazhonghua themapkkinasebcmkk1suppressesoxalicacidbiosynthesisviaimpedingphosphorylationofbcrim15bybcsch9inbotrytiscinerea
AT yinyanni mapkkinasebcmkk1suppressesoxalicacidbiosynthesisviaimpedingphosphorylationofbcrim15bybcsch9inbotrytiscinerea
AT wusisi mapkkinasebcmkk1suppressesoxalicacidbiosynthesisviaimpedingphosphorylationofbcrim15bybcsch9inbotrytiscinerea
AT chuichaonan mapkkinasebcmkk1suppressesoxalicacidbiosynthesisviaimpedingphosphorylationofbcrim15bybcsch9inbotrytiscinerea
AT matianling mapkkinasebcmkk1suppressesoxalicacidbiosynthesisviaimpedingphosphorylationofbcrim15bybcsch9inbotrytiscinerea
AT jianghuixian mapkkinasebcmkk1suppressesoxalicacidbiosynthesisviaimpedingphosphorylationofbcrim15bybcsch9inbotrytiscinerea
AT hahnmatthias mapkkinasebcmkk1suppressesoxalicacidbiosynthesisviaimpedingphosphorylationofbcrim15bybcsch9inbotrytiscinerea
AT mazhonghua mapkkinasebcmkk1suppressesoxalicacidbiosynthesisviaimpedingphosphorylationofbcrim15bybcsch9inbotrytiscinerea