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Disentangling the complex gene interaction networks between rice and the blast fungus identifies a new pathogen effector

Studies focused solely on single organisms can fail to identify the networks underlying host–pathogen gene-for-gene interactions. Here, we integrate genetic analyses of rice (Oryza sativa, host) and rice blast fungus (Magnaporthe oryzae, pathogen) and uncover a new pathogen recognition specificity o...

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Autores principales: Sugihara, Yu, Abe, Yoshiko, Takagi, Hiroki, Abe, Akira, Shimizu, Motoki, Ito, Kazue, Kanzaki, Eiko, Oikawa, Kaori, Kourelis, Jiorgos, Langner, Thorsten, Win, Joe, Białas, Aleksandra, Lüdke, Daniel, Contreras, Mauricio P., Chuma, Izumi, Saitoh, Hiromasa, Kobayashi, Michie, Zheng, Shuan, Tosa, Yukio, Banfield, Mark J., Kamoun, Sophien, Terauchi, Ryohei, Fujisaki, Koki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9851567/
https://www.ncbi.nlm.nih.gov/pubmed/36656825
http://dx.doi.org/10.1371/journal.pbio.3001945
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author Sugihara, Yu
Abe, Yoshiko
Takagi, Hiroki
Abe, Akira
Shimizu, Motoki
Ito, Kazue
Kanzaki, Eiko
Oikawa, Kaori
Kourelis, Jiorgos
Langner, Thorsten
Win, Joe
Białas, Aleksandra
Lüdke, Daniel
Contreras, Mauricio P.
Chuma, Izumi
Saitoh, Hiromasa
Kobayashi, Michie
Zheng, Shuan
Tosa, Yukio
Banfield, Mark J.
Kamoun, Sophien
Terauchi, Ryohei
Fujisaki, Koki
author_facet Sugihara, Yu
Abe, Yoshiko
Takagi, Hiroki
Abe, Akira
Shimizu, Motoki
Ito, Kazue
Kanzaki, Eiko
Oikawa, Kaori
Kourelis, Jiorgos
Langner, Thorsten
Win, Joe
Białas, Aleksandra
Lüdke, Daniel
Contreras, Mauricio P.
Chuma, Izumi
Saitoh, Hiromasa
Kobayashi, Michie
Zheng, Shuan
Tosa, Yukio
Banfield, Mark J.
Kamoun, Sophien
Terauchi, Ryohei
Fujisaki, Koki
author_sort Sugihara, Yu
collection PubMed
description Studies focused solely on single organisms can fail to identify the networks underlying host–pathogen gene-for-gene interactions. Here, we integrate genetic analyses of rice (Oryza sativa, host) and rice blast fungus (Magnaporthe oryzae, pathogen) and uncover a new pathogen recognition specificity of the rice nucleotide-binding domain and leucine-rich repeat protein (NLR) immune receptor Pik, which mediates resistance to M. oryzae expressing the avirulence effector gene AVR-Pik. Rice Piks-1, encoded by an allele of Pik-1, recognizes a previously unidentified effector encoded by the M. oryzae avirulence gene AVR-Mgk1, which is found on a mini-chromosome. AVR-Mgk1 has no sequence similarity to known AVR-Pik effectors and is prone to deletion from the mini-chromosome mediated by repeated Inago2 retrotransposon sequences. AVR-Mgk1 is detected by Piks-1 and by other Pik-1 alleles known to recognize AVR-Pik effectors; recognition is mediated by AVR-Mgk1 binding to the integrated heavy metal-associated (HMA) domain of Piks-1 and other Pik-1 alleles. Our findings highlight how complex gene-for-gene interaction networks can be disentangled by applying forward genetics approaches simultaneously to the host and pathogen. We demonstrate dynamic coevolution between an NLR integrated domain and multiple families of effector proteins.
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spelling pubmed-98515672023-01-20 Disentangling the complex gene interaction networks between rice and the blast fungus identifies a new pathogen effector Sugihara, Yu Abe, Yoshiko Takagi, Hiroki Abe, Akira Shimizu, Motoki Ito, Kazue Kanzaki, Eiko Oikawa, Kaori Kourelis, Jiorgos Langner, Thorsten Win, Joe Białas, Aleksandra Lüdke, Daniel Contreras, Mauricio P. Chuma, Izumi Saitoh, Hiromasa Kobayashi, Michie Zheng, Shuan Tosa, Yukio Banfield, Mark J. Kamoun, Sophien Terauchi, Ryohei Fujisaki, Koki PLoS Biol Research Article Studies focused solely on single organisms can fail to identify the networks underlying host–pathogen gene-for-gene interactions. Here, we integrate genetic analyses of rice (Oryza sativa, host) and rice blast fungus (Magnaporthe oryzae, pathogen) and uncover a new pathogen recognition specificity of the rice nucleotide-binding domain and leucine-rich repeat protein (NLR) immune receptor Pik, which mediates resistance to M. oryzae expressing the avirulence effector gene AVR-Pik. Rice Piks-1, encoded by an allele of Pik-1, recognizes a previously unidentified effector encoded by the M. oryzae avirulence gene AVR-Mgk1, which is found on a mini-chromosome. AVR-Mgk1 has no sequence similarity to known AVR-Pik effectors and is prone to deletion from the mini-chromosome mediated by repeated Inago2 retrotransposon sequences. AVR-Mgk1 is detected by Piks-1 and by other Pik-1 alleles known to recognize AVR-Pik effectors; recognition is mediated by AVR-Mgk1 binding to the integrated heavy metal-associated (HMA) domain of Piks-1 and other Pik-1 alleles. Our findings highlight how complex gene-for-gene interaction networks can be disentangled by applying forward genetics approaches simultaneously to the host and pathogen. We demonstrate dynamic coevolution between an NLR integrated domain and multiple families of effector proteins. Public Library of Science 2023-01-19 /pmc/articles/PMC9851567/ /pubmed/36656825 http://dx.doi.org/10.1371/journal.pbio.3001945 Text en © 2023 Sugihara et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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
Sugihara, Yu
Abe, Yoshiko
Takagi, Hiroki
Abe, Akira
Shimizu, Motoki
Ito, Kazue
Kanzaki, Eiko
Oikawa, Kaori
Kourelis, Jiorgos
Langner, Thorsten
Win, Joe
Białas, Aleksandra
Lüdke, Daniel
Contreras, Mauricio P.
Chuma, Izumi
Saitoh, Hiromasa
Kobayashi, Michie
Zheng, Shuan
Tosa, Yukio
Banfield, Mark J.
Kamoun, Sophien
Terauchi, Ryohei
Fujisaki, Koki
Disentangling the complex gene interaction networks between rice and the blast fungus identifies a new pathogen effector
title Disentangling the complex gene interaction networks between rice and the blast fungus identifies a new pathogen effector
title_full Disentangling the complex gene interaction networks between rice and the blast fungus identifies a new pathogen effector
title_fullStr Disentangling the complex gene interaction networks between rice and the blast fungus identifies a new pathogen effector
title_full_unstemmed Disentangling the complex gene interaction networks between rice and the blast fungus identifies a new pathogen effector
title_short Disentangling the complex gene interaction networks between rice and the blast fungus identifies a new pathogen effector
title_sort disentangling the complex gene interaction networks between rice and the blast fungus identifies a new pathogen effector
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9851567/
https://www.ncbi.nlm.nih.gov/pubmed/36656825
http://dx.doi.org/10.1371/journal.pbio.3001945
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