生物
白粉病
效应器
串联重复
遗传学
植物抗病性
先天免疫系统
植物免疫
富含亮氨酸重复
细胞生物学
计算生物学
激酶
免疫系统
基因
植物
拟南芥
基因组
突变体
作者
Ping Lu,G. Zhang,Jing Li,Zhen Gong,Gaojie Wang,Lingli Dong,Huaizhi Zhang,Guanghao Guo,Min Su,Ke Wang,Yueming Wang,Keyu Zhu,Qiuhong Wu,Yongxing Chen,Yongxing Chen,Miaomiao Li,Baoge Huang,Beibei Li,Wenling Li,Lei Dong
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2025-03-27
卷期号:387 (6741): 1418-1424
被引量:48
标识
DOI:10.1126/science.adp5469
摘要
Tandem kinase proteins underlie the innate immune systems of cereal plants, but how they initiate plant immune responses remains unclear. This report identifies wheat protein wheat tandem NBD 1 (WTN1), a noncanonical nucleotide-binding leucine-rich repeat (NLR) receptor featuring tandem nucleotide binding adaptor shared by APAF-1, plant R proteins, and CED-4 (NB-ARC) domains, required for WTK3-mediated disease resistance. Both WTK3 and its allelic variant Rwt4-known for conferring resistance to wheat powdery mildew and blast, respectively-are capable of recognizing the blast effector PWT4. They activate WTN1 to form calcium-permeable channels, akin to ZAR1 and Sr35. Thus, tandem kinase proteins and their associated NLRs operate as "sensor-executor" pairs against fungal pathogens. Additionally, evolutionary analyses reveal a coevolutionary trajectory of the tandem kinase-NLR module, highlighting their cooperative role in triggering plant immunity.
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