Molecular and functional analysis of a brown planthopper resistance protein with two nucleotide-binding site domains

Author:

Wang Zhizheng1,Huang Jin1,Nie Lingyun1,Hu Yinxia1,Zhang Ning1,Guo Qin1,Guo Jianping1,Du Bo1,Zhu Lili1,He Guangcun1,Chen Rongzhi1ORCID

Affiliation:

1. State Key Laboratory of Hybrid Rice, College of Life Sciences, Wuhan University, Wuhan, China

Abstract

Abstract The brown planthopper (Nilaparvata lugens Stål, BPH) resistance gene BPH9 encodes an unusual coiled-coil (CC) nucleotide-binding leucine-rich repeat (LRR) protein with two nucleotide-binding site (NBS) domains. To understand how this CC–NBS–NBS–LRR (CNNL) protein regulates defense signaling and BPH resistance, we dissected each domain’s functions. The CC domain of BPH9 self-associated and was sufficient to induce cell death. The region of 97–115 residues in the CC domain is crucial for self-association and activation. NBS2, which contains a complete set of NBS function motifs and inhibits CC domain activation, rather than NBS1, acts as a molecular switch to regulate the activity of BPH9. We demonstrated that the CC domain, the NBS domain, and the LRR domain of BPH9 associate with each other and themselves in planta. Further domain swapping experiments revealed that the CC domains of BPH9 and susceptible alleles were similarly competent to induce resistance and the hypersensitive response, while the LRR domain of BPH9 confers resistance specificity to BPH. These findings provide new insights into the regulatory mechanisms governing the activity of CNNL proteins.

Funder

National Program on Research and Development of Transgenic Plants

National Key Research and Development Program

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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