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Determination of key residues in tospoviral NSm required for Sw‐5b recognition, their potential ability to overcome resistance, and the effective resistance provided by improved Sw‐5b mutants
Sw‐5b is an effective resistance gene used widely in tomato to control tomato spotted wilt virus (TSWV), which causes severe losses in crops worldwide. Sw‐5b confers resistance by recognizing a 21‐amino‐acid peptide region of the viral movement protein NSm (NSm21, amino acids 115–135). However, C118...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8995064/ https://www.ncbi.nlm.nih.gov/pubmed/34962031 http://dx.doi.org/10.1111/mpp.13182 |
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author | Huang, Haining Zuo, Chongkun Zhao, Yaqian Huang, Shen Wang, Tongkai Zhu, Min Li, Jia Tao, Xiaorong |
author_facet | Huang, Haining Zuo, Chongkun Zhao, Yaqian Huang, Shen Wang, Tongkai Zhu, Min Li, Jia Tao, Xiaorong |
author_sort | Huang, Haining |
collection | PubMed |
description | Sw‐5b is an effective resistance gene used widely in tomato to control tomato spotted wilt virus (TSWV), which causes severe losses in crops worldwide. Sw‐5b confers resistance by recognizing a 21‐amino‐acid peptide region of the viral movement protein NSm (NSm21, amino acids 115–135). However, C118Y or T120N mutation within this peptide region of NSm has given rise to field resistance‐breaking (RB) TSWV isolates. To investigate the potential ability of TSWV to break Sw‐5b‐mediated resistance, we mutagenized each amino acid on NSm21 and determined which amino acid mutations would evade Sw‐5b recognition. Among all alanine‐scan mutants, NSm(P119A), NSm(W121A), NSm(D122A), NSm(R124A), and NSm(Q126A) failed to induce a hypersensitive response (HR) when coexpressed with Sw‐5b in Nicotiana benthamiana leaves. TSWV with the NSm(P119A), NSm(W121A), or NSm(Q126A) mutation was defective in viral cell‐to‐cell movement and systemic infection, while TSWV carrying the NSm(D122A) or NSm(R124A) mutation was not only able to infect wild‐type N. benthamiana plants systemically but also able to break Sw‐5b‐mediated resistance and establish systemic infection on Sw‐5b‐transgenic N. benthamiana plants. Two improved mutants, Sw‐5b(L33P/K319E/R927A) and Sw‐5b(L33P/K319E/R927Q) , which we recently engineered and which provide effective resistance against field RB isolates carrying NSm(C118Y) or NSm(T120N) mutations, recognized all NSm21 alanine‐substitution mutants and conferred effective resistance against new experimental RB TSWV with the NSm(D122A) or NSm(R124A) mutation. Collectively, we determined the key residues of NSm for Sw‐5b recognition, investigated their potential RB ability, and demonstrated that the improved Sw‐5b mutants could provide effective resistance to both field and potential RB TSWV isolates. |
format | Online Article Text |
id | pubmed-8995064 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-89950642022-04-15 Determination of key residues in tospoviral NSm required for Sw‐5b recognition, their potential ability to overcome resistance, and the effective resistance provided by improved Sw‐5b mutants Huang, Haining Zuo, Chongkun Zhao, Yaqian Huang, Shen Wang, Tongkai Zhu, Min Li, Jia Tao, Xiaorong Mol Plant Pathol Original Articles Sw‐5b is an effective resistance gene used widely in tomato to control tomato spotted wilt virus (TSWV), which causes severe losses in crops worldwide. Sw‐5b confers resistance by recognizing a 21‐amino‐acid peptide region of the viral movement protein NSm (NSm21, amino acids 115–135). However, C118Y or T120N mutation within this peptide region of NSm has given rise to field resistance‐breaking (RB) TSWV isolates. To investigate the potential ability of TSWV to break Sw‐5b‐mediated resistance, we mutagenized each amino acid on NSm21 and determined which amino acid mutations would evade Sw‐5b recognition. Among all alanine‐scan mutants, NSm(P119A), NSm(W121A), NSm(D122A), NSm(R124A), and NSm(Q126A) failed to induce a hypersensitive response (HR) when coexpressed with Sw‐5b in Nicotiana benthamiana leaves. TSWV with the NSm(P119A), NSm(W121A), or NSm(Q126A) mutation was defective in viral cell‐to‐cell movement and systemic infection, while TSWV carrying the NSm(D122A) or NSm(R124A) mutation was not only able to infect wild‐type N. benthamiana plants systemically but also able to break Sw‐5b‐mediated resistance and establish systemic infection on Sw‐5b‐transgenic N. benthamiana plants. Two improved mutants, Sw‐5b(L33P/K319E/R927A) and Sw‐5b(L33P/K319E/R927Q) , which we recently engineered and which provide effective resistance against field RB isolates carrying NSm(C118Y) or NSm(T120N) mutations, recognized all NSm21 alanine‐substitution mutants and conferred effective resistance against new experimental RB TSWV with the NSm(D122A) or NSm(R124A) mutation. Collectively, we determined the key residues of NSm for Sw‐5b recognition, investigated their potential RB ability, and demonstrated that the improved Sw‐5b mutants could provide effective resistance to both field and potential RB TSWV isolates. John Wiley and Sons Inc. 2021-12-27 /pmc/articles/PMC8995064/ /pubmed/34962031 http://dx.doi.org/10.1111/mpp.13182 Text en © 2021 The Authors. Molecular Plant Pathology published by British Society for Plant Pathology and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes. |
spellingShingle | Original Articles Huang, Haining Zuo, Chongkun Zhao, Yaqian Huang, Shen Wang, Tongkai Zhu, Min Li, Jia Tao, Xiaorong Determination of key residues in tospoviral NSm required for Sw‐5b recognition, their potential ability to overcome resistance, and the effective resistance provided by improved Sw‐5b mutants |
title | Determination of key residues in tospoviral NSm required for Sw‐5b recognition, their potential ability to overcome resistance, and the effective resistance provided by improved Sw‐5b mutants |
title_full | Determination of key residues in tospoviral NSm required for Sw‐5b recognition, their potential ability to overcome resistance, and the effective resistance provided by improved Sw‐5b mutants |
title_fullStr | Determination of key residues in tospoviral NSm required for Sw‐5b recognition, their potential ability to overcome resistance, and the effective resistance provided by improved Sw‐5b mutants |
title_full_unstemmed | Determination of key residues in tospoviral NSm required for Sw‐5b recognition, their potential ability to overcome resistance, and the effective resistance provided by improved Sw‐5b mutants |
title_short | Determination of key residues in tospoviral NSm required for Sw‐5b recognition, their potential ability to overcome resistance, and the effective resistance provided by improved Sw‐5b mutants |
title_sort | determination of key residues in tospoviral nsm required for sw‐5b recognition, their potential ability to overcome resistance, and the effective resistance provided by improved sw‐5b mutants |
topic | Original Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8995064/ https://www.ncbi.nlm.nih.gov/pubmed/34962031 http://dx.doi.org/10.1111/mpp.13182 |
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