The processed C-terminus of AvrRps4 effector suppresses plant immunity via targeting multiple WRKYs

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作者
QuangMinh Nguyen [1 ]
Arya Bagus Boedi Iswanto [1 ]
Hobin Kang [1 ]
Jiyun Moon [1 ]
Kieu Anh Thi Phan [1 ]
Geon Hui Son [1 ]
Mi Chung Suh [2 ]
EuiHwan Chung [3 ]
Walter Gassmann [4 ]
Sang Hee Kim [1 ,5 ]
机构
[1] Division of Applied Life Science (BK Four Program), Plant Molecular Biology and Biotechnology Research Center, Gyeongsang National University
[2] Department of Life Science, Sogang University
[3] Department of Plant Biotechnology, Korea University
[4] Division of Plant Science and Technology, Christopher SBond Life Sciences Center and Interdisciplinary Plant Group, University of Missouri
[5] Division of Life Science and Research Institute of Molecular Alchemy, Gyeongsang National
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S432.2 [植物免疫学];
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摘要
Pathogens generate and secrete effector proteins to the host plant cells during pathogenesis to promote virulence and colonization. If the plant carries resistance(R) proteins that recognize pathogen effectors,effector-triggered immunity(ETI) is activated, resulting in a robust immune response and hypersensitive response(HR). The bipartite effector AvrRps4 from Pseudomonas syringae pv. pisi has been well studied in terms of avirulence function. In planta, AvrRps4 is processed into two parts. The Cterminal fragment of AvrRps4(AvrRps4C) induces HR in turnip and is recognized by the paired resistance proteins AtRRS1/AtRPS4 in Arabidopsis. Here, we show that AvrRps4C targets a group of Arabidopsis WRKY, including WRKY46, WRKY53, WRKY54, and WRKY70, to induce its virulence function. Indeed,AvrRps4C suppresses the general binding and transcriptional activities of immune-positive regulator WRKY54 and WRKY54-mediated resistance.AvrRps4C interferes with WRKY54's binding activity to target gene SARD1 in vitro, suggesting WRKY54 is sequestered from the SARD1 promoter by AvrRps4C.Through the interaction of Avr Rps4C with four WRKYs, AvrRps4 enhances the formation of homo-/heterotypic complexes of four WRKYs and sequesters them in the cytoplasm, thus inhibiting their function in plant immunity. Together, our results provide a detailed virulence mechanism of AvrRps4 through its C-terminus.
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页码:1769 / 1787
页数:19
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  • [1] The processed C-terminus of AvrRps4 effector suppresses plant immunity via targeting multiple WRKYs
    Nguyen, Quang-Minh
    Iswanto, Arya Bagus Boedi
    Kang, Hobin
    Moon, Jiyun
    Phan, Kieu Anh Thi
    Son, Geon Hui
    Suh, Mi Chung
    Chung, Eui-Hwan
    Gassmann, Walter
    Kim, Sang Hee
    JOURNAL OF INTEGRATIVE PLANT BIOLOGY, 2024, 66 (08) : 1769 - 1787