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Identification of nuclear membrane SUN proteins and components associated with wheat fungal stress responses

Authors :
Huan Guo
Jianfeng Wang
Di Yao
Ligang Yu
Wenting Jiang
Lincai Xie
Shikai Lv
Xiangyu Zhang
Yajuan Wang
Changyou Wang
Wanquan Ji
Hong Zhang
Source :
Stress Biology, Vol 4, Iss 1, Pp 1-16 (2024)
Publication Year :
2024
Publisher :
Springer, 2024.

Abstract

Abstract In eukaryotes, the nuclear membrane that encapsulates genomic DNA is composed of an inner nuclear membrane (INM), an outer nuclear membrane (ONM), and a perinuclear space. SUN proteins located in the INM and KASH proteins in the ONM form the SUN-KASH NM-bridge, which functions as the junction of the nucleocytoplasmic complex junction. Proteins containing the SUN domain showed the highest correlation with differentially accumulated proteins (DAPs) in the wheat response to fungal stress. To understand the characteristics of SUN and its associated proteins in wheat responding to pathogen stress, here we investigated and comprehensive analyzed SUN- and KASH-related proteins among the DAPs under fungi infection based on their conserved motifs. In total, four SUN proteins, one WPP domain-interacting protein (WIP), four WPP domain-interacting tail-anchored proteins (WIT), two WPP proteins and one Ran GTPase activating protein (RanGAP) were identified. Following transient expression of Nicotiana benthamiana, TaSUN2, TaRanGAP2, TaWIT1 and TaWIP1 were identified as nuclear membrane proteins, while TaWPP1 and TaWPP2 were expressed in both the nucleus and cell membrane. RT-qPCR analysis demonstrated that the transcription of TaSUN2, TaRanGAP2 and TaWPP1 were strongly upregulated in response to fungal infection. Furthermore, using the bimolecular fluorescence complementation, the luciferase complementation and a nuclear and split-ubiquitin-based membrane yeast two-hybrid systems, we substantiated the interaction between TaSUN2 and TaWIP1, as well as TaWIP1/WIT1 and TaWPP1/WPP2. Silencing of TaSUN2, TaRanGAP2 and TaWPP1 in wheat leaves promoted powdery mildew infection and hyphal growth, and reduced the expression of TaBRI1, TaBAK1 and Ta14-3–3, indicating that these NM proteins play a positive role in resistance to fungal stress. Our study reveals the characteristics of NM proteins and propose the preliminary construction of SUN-WIP-WPP-RanGAP complex in wheat, which represents a foundation for detail elucidating their functions in wheat in future.

Details

Language :
English
ISSN :
27310450
Volume :
4
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Stress Biology
Publication Type :
Academic Journal
Accession number :
edsdoj.6ed4d4c28aed4b0e92c875f8dad4f7c0
Document Type :
article
Full Text :
https://doi.org/10.1007/s44154-024-00163-z