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Cytoplasmic and nuclear Sw-5b synergistically induce plant immune responses to inhibit different viral infection steps

Chen, H.; Qian, X.; Chen, X.; Yang, T.; Feng, M.; Chen, J.; Cheng, R.; Hong, H.; Zheng, Y.; Mei, Y.; Shen, D.; Xu, Y.; Zhu, M.; Ding, X. S.; Tao, X.

2020-12-24 plant biology
10.1101/2020.12.24.424293 bioRxiv
Show abstract

O_LIPlant intracellular nucleotide binding-leucine-rich repeat (NLR) receptors play critical roles in mediating host immunity to pathogen attack. We use tomato Sw-5b::tospovirus as a model system to study the specific role of the compartmentalized plant NLR in dictating host defense against virus at different infection steps. C_LIO_LIWe demonstrated here that tomato NLR Sw-5b translocates to cytoplasm and nucleus, respectively, to play different roles in inducing host resistances against Tomato spotted wilt tospovirus (TSWV) infection. The cytoplasmic Sw-5b functions to induce a strong cell death response to inhibit TSWV replication. This host response is, however, insufficient to block viral intercellular and long-distance movement. The nucleus-localized Sw-5b triggers a host defense that weakly inhibits viral replication but strongly impedes virus intercellular and systemic movement. Furthermore, the cytoplasmic and nuclear Sw-5b act synergistically to dictate full host defense to TSWV infection. C_LIO_LIWe further demonstrated that the extended N-terminal Solanaceae domain (SD) of Sw-5b plays critical roles in cytoplasm/nucleus partitioning. Sw-5b nucleotide-binding leucine-rich repeat (NB-LRR) controls its cytoplasm localization. Strikingly, the SD but not coil-coil (CC) domain is crucial for Sw-5b receptor to translocate from cytoplasm to nucleus to trigger the immunity. The SD was found to interact with importins. Silencing both importin and {beta} expression disrupted Sw-5b nucleus translocation and host immunity against TSWV systemic infection. C_LIO_LICollectively, our findings suggest that Sw-5b bifurcates disease resistances by cytoplasm/nucleus partitioning to block different infection steps of TSWV. The findings also identified a new regulatory role of extra domain of a plant NLR in mediating host innate immunity. C_LI

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