生物
褐飞虱
WRKY蛋白质结构域
烟草
交易激励
基因
水稻
遗传学
R基因
细胞生物学
转录因子
分子生物学
植物抗病性
拟南芥
突变体
作者
Liang Hu,Yan Wu,Di Wu,Weiwei Rao,Jianping Guo,Yinhua Ma,Zhizheng Wang,Xinxin Shangguan,Huiying Wang,Chunxue Xu,Jin Huang,Shaojie Shi,Rongzhi Chen,Bo Du,Lili Zhu,Guangcun He
出处
期刊:The Plant Cell
[Oxford University Press]
日期:2017-11-01
卷期号:29 (12): 3157-3185
被引量:81
摘要
BROWN PLANTHOPPER RESISTANCE14 (BPH14), the first planthopper resistance gene isolated via map-based cloning in rice (Oryza sativa), encodes a coiled-coil, nucleotide binding site, leucine-rich repeat (CC-NB-LRR) protein. Several planthopper and aphid resistance genes encoding proteins with similar structures have recently been identified. Here, we analyzed the functions of the domains of BPH14 to identify molecular mechanisms underpinning BPH14-mediated planthopper resistance. The CC or NB domains alone or in combination (CC-NB [CN]) conferred a similar level of brown planthopper resistance to that of full-length (FL) BPH14. Both domains activated the salicylic acid signaling pathway and defense gene expression. In rice protoplasts and Nicotiana benthamiana leaves, these domains increased reactive oxygen species levels without triggering cell death. Additionally, the resistance domains and FL BPH14 protein formed homocomplexes that interacted with transcription factors WRKY46 and WRKY72. In rice protoplasts, the expression of FL BPH14 or its CC, NB, and CN domains increased the accumulation of WRKY46 and WRKY72 as well as WRKY46- and WRKY72-dependent transactivation activity. WRKY46 and WRKY72 bind to the promoters of the receptor-like cytoplasmic kinase gene RLCK281 and the callose synthase gene LOC_Os01g67364.1, whose transactivation activity is dependent on WRKY46 or WRKY72. These findings shed light on this important insect resistance mechanism.
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