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Rac1 Is Required for Pathogenicity and Chm1-Dependent Conidiogenesis in Rice Fungal Pathogen Magnaporthe grisea

Rac1 is a small GTPase involved in actin cytoskeleton organization and polarized cell growth in many organisms. In this study, we investigate the biological function of MgRac1, a Rac1 homolog in Magnaporthe grisea. The Mgrac1 deletion mutants are defective in conidial production. Among the few conid...

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Autores principales: Chen, Jisheng, Zheng, Wu, Zheng, Shiqin, Zhang, Dongmei, Sang, Weijian, Chen, Xiao, Li, Guangpu, Lu, Guodong, Wang, Zonghua
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2575402/
https://www.ncbi.nlm.nih.gov/pubmed/19008945
http://dx.doi.org/10.1371/journal.ppat.1000202
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author Chen, Jisheng
Zheng, Wu
Zheng, Shiqin
Zhang, Dongmei
Sang, Weijian
Chen, Xiao
Li, Guangpu
Lu, Guodong
Wang, Zonghua
author_facet Chen, Jisheng
Zheng, Wu
Zheng, Shiqin
Zhang, Dongmei
Sang, Weijian
Chen, Xiao
Li, Guangpu
Lu, Guodong
Wang, Zonghua
author_sort Chen, Jisheng
collection PubMed
description Rac1 is a small GTPase involved in actin cytoskeleton organization and polarized cell growth in many organisms. In this study, we investigate the biological function of MgRac1, a Rac1 homolog in Magnaporthe grisea. The Mgrac1 deletion mutants are defective in conidial production. Among the few conidia generated, they are malformed and defective in appressorial formation and consequently lose pathogenicity. Genetic complementation with native MgRac1 fully recovers all these defective phenotypes. Consistently, expression of a dominant negative allele of MgRac1 exhibits the same defect as the deletion mutants, while expression of a constitutively active allele of MgRac1 can induce abnormally large conidia with defects in infection-related growth. Furthermore, we show the interactions between MgRac1 and its effectors, including the PAK kinase Chm1 and NADPH oxidases (Nox1 and Nox2), by the yeast two-hybrid assay. While the Nox proteins are important for pathogenicity, the MgRac1-Chm1 interaction is responsible for conidiogenesis. A constitutively active chm1 mutant, in which the Rac1-binding PBD domain is removed, fully restores conidiation of the Mgrac1 deletion mutants, but these conidia do not develop appressoria normally and are not pathogenic to rice plants. Our data suggest that the MgRac1-Chm1 pathway is responsible for conidiogenesis, but additional pathways, including the Nox pathway, are necessary for appressorial formation and pathogenicity.
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spelling pubmed-25754022008-11-14 Rac1 Is Required for Pathogenicity and Chm1-Dependent Conidiogenesis in Rice Fungal Pathogen Magnaporthe grisea Chen, Jisheng Zheng, Wu Zheng, Shiqin Zhang, Dongmei Sang, Weijian Chen, Xiao Li, Guangpu Lu, Guodong Wang, Zonghua PLoS Pathog Research Article Rac1 is a small GTPase involved in actin cytoskeleton organization and polarized cell growth in many organisms. In this study, we investigate the biological function of MgRac1, a Rac1 homolog in Magnaporthe grisea. The Mgrac1 deletion mutants are defective in conidial production. Among the few conidia generated, they are malformed and defective in appressorial formation and consequently lose pathogenicity. Genetic complementation with native MgRac1 fully recovers all these defective phenotypes. Consistently, expression of a dominant negative allele of MgRac1 exhibits the same defect as the deletion mutants, while expression of a constitutively active allele of MgRac1 can induce abnormally large conidia with defects in infection-related growth. Furthermore, we show the interactions between MgRac1 and its effectors, including the PAK kinase Chm1 and NADPH oxidases (Nox1 and Nox2), by the yeast two-hybrid assay. While the Nox proteins are important for pathogenicity, the MgRac1-Chm1 interaction is responsible for conidiogenesis. A constitutively active chm1 mutant, in which the Rac1-binding PBD domain is removed, fully restores conidiation of the Mgrac1 deletion mutants, but these conidia do not develop appressoria normally and are not pathogenic to rice plants. Our data suggest that the MgRac1-Chm1 pathway is responsible for conidiogenesis, but additional pathways, including the Nox pathway, are necessary for appressorial formation and pathogenicity. Public Library of Science 2008-11-14 /pmc/articles/PMC2575402/ /pubmed/19008945 http://dx.doi.org/10.1371/journal.ppat.1000202 Text en Chen 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
Chen, Jisheng
Zheng, Wu
Zheng, Shiqin
Zhang, Dongmei
Sang, Weijian
Chen, Xiao
Li, Guangpu
Lu, Guodong
Wang, Zonghua
Rac1 Is Required for Pathogenicity and Chm1-Dependent Conidiogenesis in Rice Fungal Pathogen Magnaporthe grisea
title Rac1 Is Required for Pathogenicity and Chm1-Dependent Conidiogenesis in Rice Fungal Pathogen Magnaporthe grisea
title_full Rac1 Is Required for Pathogenicity and Chm1-Dependent Conidiogenesis in Rice Fungal Pathogen Magnaporthe grisea
title_fullStr Rac1 Is Required for Pathogenicity and Chm1-Dependent Conidiogenesis in Rice Fungal Pathogen Magnaporthe grisea
title_full_unstemmed Rac1 Is Required for Pathogenicity and Chm1-Dependent Conidiogenesis in Rice Fungal Pathogen Magnaporthe grisea
title_short Rac1 Is Required for Pathogenicity and Chm1-Dependent Conidiogenesis in Rice Fungal Pathogen Magnaporthe grisea
title_sort rac1 is required for pathogenicity and chm1-dependent conidiogenesis in rice fungal pathogen magnaporthe grisea
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2575402/
https://www.ncbi.nlm.nih.gov/pubmed/19008945
http://dx.doi.org/10.1371/journal.ppat.1000202
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