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An RXLR effector secreted by Phytophthora parasitica is a virulence factor and triggers cell death in various plants

RXLR effectors encoded by Phytophthora species play a central role in pathogen–plant interactions. An understanding of the biological functions of RXLR effectors is conducive to the illumination of the pathogenic mechanisms and the development of disease control strategies. However, the virulence fu...

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Autores principales: Huang, Guiyan, Liu, Zhirou, Gu, Biao, Zhao, Hong, Jia, Jinbu, Fan, Guangjin, Meng, Yuling, Du, Yu, Shan, Weixing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6637884/
https://www.ncbi.nlm.nih.gov/pubmed/30320960
http://dx.doi.org/10.1111/mpp.12760
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author Huang, Guiyan
Liu, Zhirou
Gu, Biao
Zhao, Hong
Jia, Jinbu
Fan, Guangjin
Meng, Yuling
Du, Yu
Shan, Weixing
author_facet Huang, Guiyan
Liu, Zhirou
Gu, Biao
Zhao, Hong
Jia, Jinbu
Fan, Guangjin
Meng, Yuling
Du, Yu
Shan, Weixing
author_sort Huang, Guiyan
collection PubMed
description RXLR effectors encoded by Phytophthora species play a central role in pathogen–plant interactions. An understanding of the biological functions of RXLR effectors is conducive to the illumination of the pathogenic mechanisms and the development of disease control strategies. However, the virulence function of Phytophthora parasitica RXLR effectors is poorly understood. Here, we describe the identification of a P. parasitica RXLR effector gene, PPTG00121 (PpE4), which is highly transcribed during the early stages of infection. Live cell imaging of P. parasitica transformants expressing a full‐length PpE4 (E4FL)‐mCherry protein indicated that PpE4 is secreted and accumulates around haustoria during plant infection. Silencing of PpE4 in P. parasitica resulted in significantly reduced virulence on Nicotiana benthamiana. Transient expression of PpE4 in N. benthamiana in turn restored the pathogenicity of the PpE4‐silenced lines. Furthermore, the expression of PpE4 in both N. benthamiana and Arabidopsis thaliana consistently enhanced plant susceptibility to P. parasitica. These results indicate that PpE4 contributes to pathogen infection. Finally, heterologous expression experiments showed that PpE4 triggers non‐specific cell death in a variety of plants, including tobacco, tomato, potato and A. thaliana. Virus‐induced gene silencing assays revealed that PpE4‐induced cell death is dependent on HSP90, NPK and SGT1, suggesting that PpE4 is recognized by the plant immune system. In conclusion, PpE4 is an important virulence RXLR effector of P. parasitica and recognized by a wide range of host plants.
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spelling pubmed-66378842019-09-16 An RXLR effector secreted by Phytophthora parasitica is a virulence factor and triggers cell death in various plants Huang, Guiyan Liu, Zhirou Gu, Biao Zhao, Hong Jia, Jinbu Fan, Guangjin Meng, Yuling Du, Yu Shan, Weixing Mol Plant Pathol Original Articles RXLR effectors encoded by Phytophthora species play a central role in pathogen–plant interactions. An understanding of the biological functions of RXLR effectors is conducive to the illumination of the pathogenic mechanisms and the development of disease control strategies. However, the virulence function of Phytophthora parasitica RXLR effectors is poorly understood. Here, we describe the identification of a P. parasitica RXLR effector gene, PPTG00121 (PpE4), which is highly transcribed during the early stages of infection. Live cell imaging of P. parasitica transformants expressing a full‐length PpE4 (E4FL)‐mCherry protein indicated that PpE4 is secreted and accumulates around haustoria during plant infection. Silencing of PpE4 in P. parasitica resulted in significantly reduced virulence on Nicotiana benthamiana. Transient expression of PpE4 in N. benthamiana in turn restored the pathogenicity of the PpE4‐silenced lines. Furthermore, the expression of PpE4 in both N. benthamiana and Arabidopsis thaliana consistently enhanced plant susceptibility to P. parasitica. These results indicate that PpE4 contributes to pathogen infection. Finally, heterologous expression experiments showed that PpE4 triggers non‐specific cell death in a variety of plants, including tobacco, tomato, potato and A. thaliana. Virus‐induced gene silencing assays revealed that PpE4‐induced cell death is dependent on HSP90, NPK and SGT1, suggesting that PpE4 is recognized by the plant immune system. In conclusion, PpE4 is an important virulence RXLR effector of P. parasitica and recognized by a wide range of host plants. John Wiley and Sons Inc. 2018-11-22 /pmc/articles/PMC6637884/ /pubmed/30320960 http://dx.doi.org/10.1111/mpp.12760 Text en © 2018 The Authors. Molecular Plant Pathology published by BSPP and John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Huang, Guiyan
Liu, Zhirou
Gu, Biao
Zhao, Hong
Jia, Jinbu
Fan, Guangjin
Meng, Yuling
Du, Yu
Shan, Weixing
An RXLR effector secreted by Phytophthora parasitica is a virulence factor and triggers cell death in various plants
title An RXLR effector secreted by Phytophthora parasitica is a virulence factor and triggers cell death in various plants
title_full An RXLR effector secreted by Phytophthora parasitica is a virulence factor and triggers cell death in various plants
title_fullStr An RXLR effector secreted by Phytophthora parasitica is a virulence factor and triggers cell death in various plants
title_full_unstemmed An RXLR effector secreted by Phytophthora parasitica is a virulence factor and triggers cell death in various plants
title_short An RXLR effector secreted by Phytophthora parasitica is a virulence factor and triggers cell death in various plants
title_sort rxlr effector secreted by phytophthora parasitica is a virulence factor and triggers cell death in various plants
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6637884/
https://www.ncbi.nlm.nih.gov/pubmed/30320960
http://dx.doi.org/10.1111/mpp.12760
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