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Wheat Ym2 originated from Aegilops sharonensis and confers resistance to soil-borne Wheat yellow mosaic virus infection to the roots

Wheat yellow mosaic virus (WYMV) is a pathogen transmitted into its host’s roots by the soil-borne vector Polymyxa graminis. Ym1 and Ym2 genes protect the host from the significant yield losses caused by the virus, but the mechanistic basis of these resistance genes remains poorly understood. Here,...

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Autores principales: Mishina, Kohei, Suzuki, Takako, Oono, Youko, Yamashita, Yoko, Zhu, Hongjing, Ogawa, Taiichi, Ohta, Masaru, Doman, Kohei, Xu, Wenjing, Takahashi, Daichi, Miyazaki, Taiga, Tagiri, Akemi, Soma, Chihiro, Horita, Harukuni, Nasuda, Shuhei, De Oliveira, Romain, Paux, Etienne, Chen, Guoxiong, Pourkheirandish, Mohammad, Wu, Jianzhong, Liu, Cheng, Komatsuda, Takao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10089197/
https://www.ncbi.nlm.nih.gov/pubmed/36897977
http://dx.doi.org/10.1073/pnas.2214968120
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author Mishina, Kohei
Suzuki, Takako
Oono, Youko
Yamashita, Yoko
Zhu, Hongjing
Ogawa, Taiichi
Ohta, Masaru
Doman, Kohei
Xu, Wenjing
Takahashi, Daichi
Miyazaki, Taiga
Tagiri, Akemi
Soma, Chihiro
Horita, Harukuni
Nasuda, Shuhei
De Oliveira, Romain
Paux, Etienne
Chen, Guoxiong
Pourkheirandish, Mohammad
Wu, Jianzhong
Liu, Cheng
Komatsuda, Takao
author_facet Mishina, Kohei
Suzuki, Takako
Oono, Youko
Yamashita, Yoko
Zhu, Hongjing
Ogawa, Taiichi
Ohta, Masaru
Doman, Kohei
Xu, Wenjing
Takahashi, Daichi
Miyazaki, Taiga
Tagiri, Akemi
Soma, Chihiro
Horita, Harukuni
Nasuda, Shuhei
De Oliveira, Romain
Paux, Etienne
Chen, Guoxiong
Pourkheirandish, Mohammad
Wu, Jianzhong
Liu, Cheng
Komatsuda, Takao
author_sort Mishina, Kohei
collection PubMed
description Wheat yellow mosaic virus (WYMV) is a pathogen transmitted into its host’s roots by the soil-borne vector Polymyxa graminis. Ym1 and Ym2 genes protect the host from the significant yield losses caused by the virus, but the mechanistic basis of these resistance genes remains poorly understood. Here, it has been shown that Ym1 and Ym2 act within the root either by hindering the initial movement of WYMV from the vector into the root and/or by suppressing viral multiplication. A mechanical inoculation experiment on the leaf revealed that the presence of Ym1 reduced viral infection incidence, rather than viral titer, while that of Ym2 was ineffective in the leaf. To understand the basis of the root specificity of the Ym2 product, the gene was isolated from bread wheat using a positional cloning approach. The candidate gene encodes a CC-NBS-LRR protein and it correlated allelic variation with respect to its sequence with the host’s disease response. Ym2 (B37500) and its paralog (B35800) are found in the near-relatives, respectively, Aegilops sharonensis and Aegilops speltoides (a close relative of the donor of bread wheat’s B genome), while both sequences, in a concatenated state, are present in several accessions of the latter species. Structural diversity in Ym2 has been generated via translocation and recombination between the two genes and enhanced by the formation of a chimeric gene resulting from an intralocus recombination event. The analysis has revealed how the Ym2 region has evolved during the polyploidization events leading to the creation of cultivated wheat.
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spelling pubmed-100891972023-09-10 Wheat Ym2 originated from Aegilops sharonensis and confers resistance to soil-borne Wheat yellow mosaic virus infection to the roots Mishina, Kohei Suzuki, Takako Oono, Youko Yamashita, Yoko Zhu, Hongjing Ogawa, Taiichi Ohta, Masaru Doman, Kohei Xu, Wenjing Takahashi, Daichi Miyazaki, Taiga Tagiri, Akemi Soma, Chihiro Horita, Harukuni Nasuda, Shuhei De Oliveira, Romain Paux, Etienne Chen, Guoxiong Pourkheirandish, Mohammad Wu, Jianzhong Liu, Cheng Komatsuda, Takao Proc Natl Acad Sci U S A Biological Sciences Wheat yellow mosaic virus (WYMV) is a pathogen transmitted into its host’s roots by the soil-borne vector Polymyxa graminis. Ym1 and Ym2 genes protect the host from the significant yield losses caused by the virus, but the mechanistic basis of these resistance genes remains poorly understood. Here, it has been shown that Ym1 and Ym2 act within the root either by hindering the initial movement of WYMV from the vector into the root and/or by suppressing viral multiplication. A mechanical inoculation experiment on the leaf revealed that the presence of Ym1 reduced viral infection incidence, rather than viral titer, while that of Ym2 was ineffective in the leaf. To understand the basis of the root specificity of the Ym2 product, the gene was isolated from bread wheat using a positional cloning approach. The candidate gene encodes a CC-NBS-LRR protein and it correlated allelic variation with respect to its sequence with the host’s disease response. Ym2 (B37500) and its paralog (B35800) are found in the near-relatives, respectively, Aegilops sharonensis and Aegilops speltoides (a close relative of the donor of bread wheat’s B genome), while both sequences, in a concatenated state, are present in several accessions of the latter species. Structural diversity in Ym2 has been generated via translocation and recombination between the two genes and enhanced by the formation of a chimeric gene resulting from an intralocus recombination event. The analysis has revealed how the Ym2 region has evolved during the polyploidization events leading to the creation of cultivated wheat. National Academy of Sciences 2023-03-10 2023-03-14 /pmc/articles/PMC10089197/ /pubmed/36897977 http://dx.doi.org/10.1073/pnas.2214968120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Mishina, Kohei
Suzuki, Takako
Oono, Youko
Yamashita, Yoko
Zhu, Hongjing
Ogawa, Taiichi
Ohta, Masaru
Doman, Kohei
Xu, Wenjing
Takahashi, Daichi
Miyazaki, Taiga
Tagiri, Akemi
Soma, Chihiro
Horita, Harukuni
Nasuda, Shuhei
De Oliveira, Romain
Paux, Etienne
Chen, Guoxiong
Pourkheirandish, Mohammad
Wu, Jianzhong
Liu, Cheng
Komatsuda, Takao
Wheat Ym2 originated from Aegilops sharonensis and confers resistance to soil-borne Wheat yellow mosaic virus infection to the roots
title Wheat Ym2 originated from Aegilops sharonensis and confers resistance to soil-borne Wheat yellow mosaic virus infection to the roots
title_full Wheat Ym2 originated from Aegilops sharonensis and confers resistance to soil-borne Wheat yellow mosaic virus infection to the roots
title_fullStr Wheat Ym2 originated from Aegilops sharonensis and confers resistance to soil-borne Wheat yellow mosaic virus infection to the roots
title_full_unstemmed Wheat Ym2 originated from Aegilops sharonensis and confers resistance to soil-borne Wheat yellow mosaic virus infection to the roots
title_short Wheat Ym2 originated from Aegilops sharonensis and confers resistance to soil-borne Wheat yellow mosaic virus infection to the roots
title_sort wheat ym2 originated from aegilops sharonensis and confers resistance to soil-borne wheat yellow mosaic virus infection to the roots
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10089197/
https://www.ncbi.nlm.nih.gov/pubmed/36897977
http://dx.doi.org/10.1073/pnas.2214968120
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