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VqMAPK3/VqMAPK6, VqWRKY33, and VqNSTS3 constitute a regulatory node in enhancing resistance to powdery mildew in grapevine

Grapevine powdery mildew is caused by Erysiphe necator, which seriously harms grape production in the world. Stilbene synthase makes phytoalexins that contribute to the resistance of grapevine against powdery mildew. A novel VqNSTS3 was identified and cloned from Chinese wild Vitis quinquangularis a...

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Autores principales: Liu, Wandi, Yan, Chaohui, Li, Ruimin, Chen, Guanyu, Wang, Xinqi, Wen, Yingqiang, Zhang, Chaohong, Wang, Xiping, Xu, Yan, Wang, Yuejin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10541564/
https://www.ncbi.nlm.nih.gov/pubmed/37786728
http://dx.doi.org/10.1093/hr/uhad116
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author Liu, Wandi
Yan, Chaohui
Li, Ruimin
Chen, Guanyu
Wang, Xinqi
Wen, Yingqiang
Zhang, Chaohong
Wang, Xiping
Xu, Yan
Wang, Yuejin
author_facet Liu, Wandi
Yan, Chaohui
Li, Ruimin
Chen, Guanyu
Wang, Xinqi
Wen, Yingqiang
Zhang, Chaohong
Wang, Xiping
Xu, Yan
Wang, Yuejin
author_sort Liu, Wandi
collection PubMed
description Grapevine powdery mildew is caused by Erysiphe necator, which seriously harms grape production in the world. Stilbene synthase makes phytoalexins that contribute to the resistance of grapevine against powdery mildew. A novel VqNSTS3 was identified and cloned from Chinese wild Vitis quinquangularis accession Danfeng-2. The novel VqNSTS3 was transferred into susceptible ‘Thompson Seedless’ by Agrobacterium-mediated transformation. The transgenic plants showed resistance to the disease and activated other resistance-related genes. VqNSTS3 expression in grapevine is regulated by VqWRKY33, and which binds to TTGACC in the VqNSTS3 promoter. Furthermore, VqWRKY33 was phosphorylated by VqMAPK3/VqMAPK6 and thus led to enhanced signal transduction and increased VqNSTS3 expression. ProVqNSTS3::VqNSTS3-GFP of transgenic VqNSTS3 in Arabidopsis thaliana was observed to move to and wrap the pathogen’s haustoria and block invasion by Golovinomyces cichoracearum. These results demonstrate that stilbene accumulation of novel VqNSTS3 of the Chinese wild Vitis quinquangularis accession Danfeng-2 prevented pathogen invasion and enhanced resistance to powdery mildew. Therefore, VqNSTS3 can be used in generating powdery mildew-resistant grapevines.
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spelling pubmed-105415642023-10-02 VqMAPK3/VqMAPK6, VqWRKY33, and VqNSTS3 constitute a regulatory node in enhancing resistance to powdery mildew in grapevine Liu, Wandi Yan, Chaohui Li, Ruimin Chen, Guanyu Wang, Xinqi Wen, Yingqiang Zhang, Chaohong Wang, Xiping Xu, Yan Wang, Yuejin Hortic Res Article Grapevine powdery mildew is caused by Erysiphe necator, which seriously harms grape production in the world. Stilbene synthase makes phytoalexins that contribute to the resistance of grapevine against powdery mildew. A novel VqNSTS3 was identified and cloned from Chinese wild Vitis quinquangularis accession Danfeng-2. The novel VqNSTS3 was transferred into susceptible ‘Thompson Seedless’ by Agrobacterium-mediated transformation. The transgenic plants showed resistance to the disease and activated other resistance-related genes. VqNSTS3 expression in grapevine is regulated by VqWRKY33, and which binds to TTGACC in the VqNSTS3 promoter. Furthermore, VqWRKY33 was phosphorylated by VqMAPK3/VqMAPK6 and thus led to enhanced signal transduction and increased VqNSTS3 expression. ProVqNSTS3::VqNSTS3-GFP of transgenic VqNSTS3 in Arabidopsis thaliana was observed to move to and wrap the pathogen’s haustoria and block invasion by Golovinomyces cichoracearum. These results demonstrate that stilbene accumulation of novel VqNSTS3 of the Chinese wild Vitis quinquangularis accession Danfeng-2 prevented pathogen invasion and enhanced resistance to powdery mildew. Therefore, VqNSTS3 can be used in generating powdery mildew-resistant grapevines. Oxford University Press 2023-05-31 /pmc/articles/PMC10541564/ /pubmed/37786728 http://dx.doi.org/10.1093/hr/uhad116 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Nanjing Agricultural University. 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 reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Liu, Wandi
Yan, Chaohui
Li, Ruimin
Chen, Guanyu
Wang, Xinqi
Wen, Yingqiang
Zhang, Chaohong
Wang, Xiping
Xu, Yan
Wang, Yuejin
VqMAPK3/VqMAPK6, VqWRKY33, and VqNSTS3 constitute a regulatory node in enhancing resistance to powdery mildew in grapevine
title VqMAPK3/VqMAPK6, VqWRKY33, and VqNSTS3 constitute a regulatory node in enhancing resistance to powdery mildew in grapevine
title_full VqMAPK3/VqMAPK6, VqWRKY33, and VqNSTS3 constitute a regulatory node in enhancing resistance to powdery mildew in grapevine
title_fullStr VqMAPK3/VqMAPK6, VqWRKY33, and VqNSTS3 constitute a regulatory node in enhancing resistance to powdery mildew in grapevine
title_full_unstemmed VqMAPK3/VqMAPK6, VqWRKY33, and VqNSTS3 constitute a regulatory node in enhancing resistance to powdery mildew in grapevine
title_short VqMAPK3/VqMAPK6, VqWRKY33, and VqNSTS3 constitute a regulatory node in enhancing resistance to powdery mildew in grapevine
title_sort vqmapk3/vqmapk6, vqwrky33, and vqnsts3 constitute a regulatory node in enhancing resistance to powdery mildew in grapevine
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10541564/
https://www.ncbi.nlm.nih.gov/pubmed/37786728
http://dx.doi.org/10.1093/hr/uhad116
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