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Role of lysine residues of the Magnaporthe oryzae effector AvrPiz‐t in effector‐ and PAMP‐triggered immunity

Magnaporthe oryzae is an important fungal pathogen of both rice and wheat. However, how M. oryzae effectors modulate plant immunity is not fully understood. Previous studies have shown that the M. oryzae effector AvrPiz‐t targets the host ubiquitin‐proteasome system to manipulate plant defence. In r...

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Autores principales: Bai, Pengfei, Park, Chan‐Ho, Shirsekar, Gautam, Songkumarn, Pattavipha, Bellizzi, Maria, Wang, Guo‐Liang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6637882/
https://www.ncbi.nlm.nih.gov/pubmed/30548752
http://dx.doi.org/10.1111/mpp.12779
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author Bai, Pengfei
Park, Chan‐Ho
Shirsekar, Gautam
Songkumarn, Pattavipha
Bellizzi, Maria
Wang, Guo‐Liang
author_facet Bai, Pengfei
Park, Chan‐Ho
Shirsekar, Gautam
Songkumarn, Pattavipha
Bellizzi, Maria
Wang, Guo‐Liang
author_sort Bai, Pengfei
collection PubMed
description Magnaporthe oryzae is an important fungal pathogen of both rice and wheat. However, how M. oryzae effectors modulate plant immunity is not fully understood. Previous studies have shown that the M. oryzae effector AvrPiz‐t targets the host ubiquitin‐proteasome system to manipulate plant defence. In return, two rice ubiquitin E3 ligases, APIP6 and APIP10, ubiquitinate AvrPiz‐t for degradation. To determine how lysine residues contribute to the stability and function of AvrPiz‐t, we generated double (K1,2R‐AvrPiz‐t), triple (K1,2,3R‐AvrPiz‐t) and lysine‐free (LF‐AvrPiz‐t) mutants by mutating lysines into arginines in AvrPiz‐t. LF‐AvrPiz‐t showed the highest protein accumulation when transiently expressed in rice protoplasts. When co‐expressed with APIP10 in Nicotiana benthamiana, LF‐AvrPiz‐t was more stable than AvrPiz‐t and was less able to degrade APIP10. The avirulence of LF‐AvrPiz‐t on Piz‐t:HA plants was less than that of AvrPiz‐t, which led to resistance reduction and lower accumulation of the Piz‐t:HA protein after inoculation with the LF‐AvrPiz‐t‐carrying isolate. Chitin‐ and flg22‐induced production of reactive oxygen species (ROS) was higher in LF‐AvrPiz‐t than in AvrPiz‐t transgenic plants. In addition, LF‐AvrPiz‐t transgenic plants were less susceptible than AvrPiz‐t transgenic plants to a virulent isolate. Furthermore, both AvrPiz‐t and LF‐AvrPiz‐t interacted with OsRac1, but the suppression of OsRac1‐mediated ROS generation by LF‐AvrPiz‐t was significantly lower than that by AvrPiz‐t. Together, these results suggest that the lysine residues of AvrPiz‐t are required for its avirulence and virulence functions in rice.
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spelling pubmed-66378822019-09-16 Role of lysine residues of the Magnaporthe oryzae effector AvrPiz‐t in effector‐ and PAMP‐triggered immunity Bai, Pengfei Park, Chan‐Ho Shirsekar, Gautam Songkumarn, Pattavipha Bellizzi, Maria Wang, Guo‐Liang Mol Plant Pathol Original Articles Magnaporthe oryzae is an important fungal pathogen of both rice and wheat. However, how M. oryzae effectors modulate plant immunity is not fully understood. Previous studies have shown that the M. oryzae effector AvrPiz‐t targets the host ubiquitin‐proteasome system to manipulate plant defence. In return, two rice ubiquitin E3 ligases, APIP6 and APIP10, ubiquitinate AvrPiz‐t for degradation. To determine how lysine residues contribute to the stability and function of AvrPiz‐t, we generated double (K1,2R‐AvrPiz‐t), triple (K1,2,3R‐AvrPiz‐t) and lysine‐free (LF‐AvrPiz‐t) mutants by mutating lysines into arginines in AvrPiz‐t. LF‐AvrPiz‐t showed the highest protein accumulation when transiently expressed in rice protoplasts. When co‐expressed with APIP10 in Nicotiana benthamiana, LF‐AvrPiz‐t was more stable than AvrPiz‐t and was less able to degrade APIP10. The avirulence of LF‐AvrPiz‐t on Piz‐t:HA plants was less than that of AvrPiz‐t, which led to resistance reduction and lower accumulation of the Piz‐t:HA protein after inoculation with the LF‐AvrPiz‐t‐carrying isolate. Chitin‐ and flg22‐induced production of reactive oxygen species (ROS) was higher in LF‐AvrPiz‐t than in AvrPiz‐t transgenic plants. In addition, LF‐AvrPiz‐t transgenic plants were less susceptible than AvrPiz‐t transgenic plants to a virulent isolate. Furthermore, both AvrPiz‐t and LF‐AvrPiz‐t interacted with OsRac1, but the suppression of OsRac1‐mediated ROS generation by LF‐AvrPiz‐t was significantly lower than that by AvrPiz‐t. Together, these results suggest that the lysine residues of AvrPiz‐t are required for its avirulence and virulence functions in rice. John Wiley and Sons Inc. 2019-02-08 /pmc/articles/PMC6637882/ /pubmed/30548752 http://dx.doi.org/10.1111/mpp.12779 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
Bai, Pengfei
Park, Chan‐Ho
Shirsekar, Gautam
Songkumarn, Pattavipha
Bellizzi, Maria
Wang, Guo‐Liang
Role of lysine residues of the Magnaporthe oryzae effector AvrPiz‐t in effector‐ and PAMP‐triggered immunity
title Role of lysine residues of the Magnaporthe oryzae effector AvrPiz‐t in effector‐ and PAMP‐triggered immunity
title_full Role of lysine residues of the Magnaporthe oryzae effector AvrPiz‐t in effector‐ and PAMP‐triggered immunity
title_fullStr Role of lysine residues of the Magnaporthe oryzae effector AvrPiz‐t in effector‐ and PAMP‐triggered immunity
title_full_unstemmed Role of lysine residues of the Magnaporthe oryzae effector AvrPiz‐t in effector‐ and PAMP‐triggered immunity
title_short Role of lysine residues of the Magnaporthe oryzae effector AvrPiz‐t in effector‐ and PAMP‐triggered immunity
title_sort role of lysine residues of the magnaporthe oryzae effector avrpiz‐t in effector‐ and pamp‐triggered immunity
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6637882/
https://www.ncbi.nlm.nih.gov/pubmed/30548752
http://dx.doi.org/10.1111/mpp.12779
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