烟草
丁香假单胞菌
生物
猕猴桃
猕猴桃
植物抗病性
溃疡
几维鸟
植物
基因
遗传学
园艺
作者
Shin‐Mei Yeh,Minsoo Yoon,Sidney Scott,Abhishek Chatterjee,Lauren M. Hemara,Ronan Chen,Tianchi Wang,Kerry Templeton,Erik H. A. Rikkerink,Jay Jayaraman,Cyril Brendolise
摘要
Abstract Pseudomonas syringae pv. actinidiae biovar 3 (Psa3) causes a devastating canker disease in yellow‐fleshed kiwifruit ( Actinidia chinensis ). The effector HopZ5, which is present in all isolates of Psa3 causing global outbreaks of pandemic kiwifruit canker disease, triggers immunity in Nicotiana benthamiana and is not recognised in susceptible A. chinensis cultivars. In a search for N. benthamiana nonhost resistance genes against HopZ5, we found that the nucleotide‐binding leucine‐rich repeat receptor NbPTR1 recognised HopZ5. RPM1‐interacting protein 4 orthologues from N. benthamiana and A. chinensis formed a complex with NbPTR1 and HopZ5 activity was able to disrupt this interaction. No functional orthologues of Nb PTR1 were found in A. chinensis . Nb PTR1 transformed into Psa3‐susceptible A. chinensis var. chinensis ‘Hort16A’ plants introduced HopZ5‐specific resistance against Psa3. Altogether, this study suggested that expressing NbPTR1 in Psa3‐susceptible kiwifruit is a viable approach to acquiring resistance to Psa3 and it provides valuable information for engineering resistance in otherwise susceptible kiwifruit genotypes.
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