亚种
广谱
选择(遗传算法)
生物
疾病
植物抗病性
免疫系统
光谱(功能分析)
遗传学
动物
计算机科学
医学
人工智能
物理
基因
化学
内科学
量子力学
组合化学
作者
Hui Lin,C. Dan,Chae‐Ok Yun,Yutao Xiao,Meng Yuan,Jie Qiu,Ying Chen,Jie Wang,Chai Bin Xuan,G. Yu,Lina Sha,Yun Liu,Jun Wang,Li Bai,Minghui Zeng,Long Xu,Jiyeon Seong,Hui Huang,Bin Han,Dongling Wen
标识
DOI:10.1101/2025.02.06.636770
摘要
Abstract Artificial selection has greatly shaped crop agronomic traits; however, the mechanistic basis of immunity selection has remained elusive. This study identifies a new rice NLR XA48 and its downstream transcription factor OsVOZ1, which confer bacterial blight resistance. XA48 perceives an ancient pathogen effector, XopG, to activates effector-triggered immunity (ETI). The XA48-OsVOZ1 module has undergone subspecies-specific selection. Xa48 is retained in indica but functionally lost in japonica rice. OsVOZ1 has also diverged into two haplotypes, indica kept both OsVOZ1 A/S alleles that match XA48; while japonica only inherited OsVOZ1 A that greatly decreases yield when Xa48 is reintroduced into japonica , mechanistically explaining the Xa48 loss in japonica . We resurrected wild rice broad-spectrum resistance by stacking XA48-mediated ETI with XA21-mediated pattern-triggered immunity (PTI). Thus, our study reveals that the asymmetric selection of an NLR-TF module shapes both disease resistance and reproduction, and provides a paradigm for breeding crops by harnessing the immunity of wild relatives.
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