The casein kinase MoYck1 regulates development, autophagy, and virulence in the rice blast fungus

Casein kinases are serine/threonine protein kinases that are evolutionarily conserved in yeast and humans and are involved in a range of important cellular processes. However, the biological functions of casein kinases in the fungus Magnaporthe oryzae, the causal agent of destructive rice blast dise...

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Main Authors: Huan-Bin Shi, Nan Chen, Xue-Ming Zhu, Zhen-Zhu Su, Jiao-Yu Wang, Jian-Ping Lu, Xiao-Hong Liu, Fu-Cheng Lin
Format: Article
Language:English
Published: Taylor & Francis Group 2019-01-01
Series:Virulence
Subjects:
Online Access:http://dx.doi.org/10.1080/21505594.2019.1649588
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spelling doaj-3a9bf29d978b4684afd1209a032d96bf2020-11-25T02:43:17ZengTaylor & Francis GroupVirulence2150-55942150-56082019-01-0110171973310.1080/21505594.2019.16495881649588The casein kinase MoYck1 regulates development, autophagy, and virulence in the rice blast fungusHuan-Bin Shi0Nan Chen1Xue-Ming Zhu2Zhen-Zhu Su3Jiao-Yu Wang4Jian-Ping Lu5Xiao-Hong Liu6Fu-Cheng Lin7Zhejiang UniversityZhejiang UniversityZhejiang UniversityZhejiang UniversityZhejiang Academy of Agricultural ScienceZhejiang UniversityZhejiang UniversityZhejiang UniversityCasein kinases are serine/threonine protein kinases that are evolutionarily conserved in yeast and humans and are involved in a range of important cellular processes. However, the biological functions of casein kinases in the fungus Magnaporthe oryzae, the causal agent of destructive rice blast disease, are not characterized. Here, two casein kinases, MoYCK1 and MoHRR25, were identified and targeted for replacement, but only MoYCK1 was further characterized due to the possible nonviability of the MoHRR25 deletion mutant. Disruption of MoYCK1 caused pleiotropic defects in growth, conidiation, conidial germination, and appressorium formation and penetration, therefore resulting in reduced virulence in rice seedlings and barley leaves. Notably, the MoYCK1 deletion triggered quick lipidation of MoAtg8 and degradation of the autophagic marker protein GFP-MoAtg8 under nitrogen starvation conditions, in contrast to the wild type, indicating that autophagy activity was negatively regulated by MoYck1. Furthermore, we found that HOPS (homotypic fusion and vacuolar protein sorting) subunit MoVps41, a putative substrate of MoYck1, was co-located with MoAtg8 and positively required for the degradation of MoAtg8-PE and GFP-MoAtg8. In addition, MoYCK1 is also involved in the response to ionic hyperosmotic and heavy metal cation stresses. Taken together, our results revealed crucial roles of the casein kinase MoYck1 in regulating development, autophagy and virulence in M. oryzae.http://dx.doi.org/10.1080/21505594.2019.1649588magnaporthe oryzaecasein kinasedevelopmentautophagyvirulence
collection DOAJ
language English
format Article
sources DOAJ
author Huan-Bin Shi
Nan Chen
Xue-Ming Zhu
Zhen-Zhu Su
Jiao-Yu Wang
Jian-Ping Lu
Xiao-Hong Liu
Fu-Cheng Lin
spellingShingle Huan-Bin Shi
Nan Chen
Xue-Ming Zhu
Zhen-Zhu Su
Jiao-Yu Wang
Jian-Ping Lu
Xiao-Hong Liu
Fu-Cheng Lin
The casein kinase MoYck1 regulates development, autophagy, and virulence in the rice blast fungus
Virulence
magnaporthe oryzae
casein kinase
development
autophagy
virulence
author_facet Huan-Bin Shi
Nan Chen
Xue-Ming Zhu
Zhen-Zhu Su
Jiao-Yu Wang
Jian-Ping Lu
Xiao-Hong Liu
Fu-Cheng Lin
author_sort Huan-Bin Shi
title The casein kinase MoYck1 regulates development, autophagy, and virulence in the rice blast fungus
title_short The casein kinase MoYck1 regulates development, autophagy, and virulence in the rice blast fungus
title_full The casein kinase MoYck1 regulates development, autophagy, and virulence in the rice blast fungus
title_fullStr The casein kinase MoYck1 regulates development, autophagy, and virulence in the rice blast fungus
title_full_unstemmed The casein kinase MoYck1 regulates development, autophagy, and virulence in the rice blast fungus
title_sort casein kinase moyck1 regulates development, autophagy, and virulence in the rice blast fungus
publisher Taylor & Francis Group
series Virulence
issn 2150-5594
2150-5608
publishDate 2019-01-01
description Casein kinases are serine/threonine protein kinases that are evolutionarily conserved in yeast and humans and are involved in a range of important cellular processes. However, the biological functions of casein kinases in the fungus Magnaporthe oryzae, the causal agent of destructive rice blast disease, are not characterized. Here, two casein kinases, MoYCK1 and MoHRR25, were identified and targeted for replacement, but only MoYCK1 was further characterized due to the possible nonviability of the MoHRR25 deletion mutant. Disruption of MoYCK1 caused pleiotropic defects in growth, conidiation, conidial germination, and appressorium formation and penetration, therefore resulting in reduced virulence in rice seedlings and barley leaves. Notably, the MoYCK1 deletion triggered quick lipidation of MoAtg8 and degradation of the autophagic marker protein GFP-MoAtg8 under nitrogen starvation conditions, in contrast to the wild type, indicating that autophagy activity was negatively regulated by MoYck1. Furthermore, we found that HOPS (homotypic fusion and vacuolar protein sorting) subunit MoVps41, a putative substrate of MoYck1, was co-located with MoAtg8 and positively required for the degradation of MoAtg8-PE and GFP-MoAtg8. In addition, MoYCK1 is also involved in the response to ionic hyperosmotic and heavy metal cation stresses. Taken together, our results revealed crucial roles of the casein kinase MoYck1 in regulating development, autophagy and virulence in M. oryzae.
topic magnaporthe oryzae
casein kinase
development
autophagy
virulence
url http://dx.doi.org/10.1080/21505594.2019.1649588
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