Zhou Bo, Qu Shaohong, Liu Guifu, Dolan Maureen, Sakai Hajime, Lu Guodong, Bellizzi Maria, Wang Guo-Liang
Department of Plant Pathology, Ohio State University, Columbus, OH 43210, USA.
Mol Plant Microbe Interact. 2006 Nov;19(11):1216-28. doi: 10.1094/MPMI-19-1216.
The rice blast resistance (R) genes Pi2 and Piz-t confer broad-spectrum resistance against different sets of Magnaporthe grisea isolates. We first identified the Pi2 gene using a map-based cloning strategy. The Pi2 gene is a member of a gene cluster comprising nine gene members (named Nbs1-Pi2 to Nbs9-Pi2) and encodes a protein with a nucleotide-binding site and leucine-rich repeat (LRR) domain. Fine genetic mapping, molecular characterization of the Pi2 susceptible mutants, and complementation tests indicated that Nbs4-Pi2 is the Pi2 gene. The Piz-t gene, a Pi2 allele in the rice cultivar Toride 1, was isolated based on the Pi2 sequence information. Complementation tests confirmed that the family member Nbs4-Piz-t is Piz-t. Sequence comparison revealed that only eight amino-acid changes, which are confined within three consecutive LRR, differentiate Piz-t from Pi2. Of the eight variants, only one locates within the xxLxLxx motif. A reciprocal exchange of the single amino acid between Pi2 and Piz-t did not convert the resistance specificity to each other but, rather, abolished the function of both resistance proteins. These results indicate that the single amino acid in the xxLxLxx motif may be critical for maintaining the recognition surface of Pi2 and Piz-t to their respective avirulence proteins.
水稻抗稻瘟病(R)基因Pi2和Piz - t对不同的稻瘟病菌分离株具有广谱抗性。我们首先使用基于图谱的克隆策略鉴定了Pi2基因。Pi2基因是一个由九个基因成员组成的基因簇的成员(命名为Nbs1 - Pi2至Nbs9 - Pi2),并编码一种具有核苷酸结合位点和富含亮氨酸重复序列(LRR)结构域的蛋白质。精细遗传图谱绘制、Pi2感病突变体的分子特征分析以及互补试验表明Nbs4 - Pi2是Pi2基因。基于Pi2序列信息分离出了水稻品种鸟取1中的Pi2等位基因Piz - t基因。互补试验证实家族成员Nbs4 - Piz - t就是Piz - t。序列比较显示,Piz - t与Pi2仅有八个氨基酸变化,且这些变化局限于三个连续的LRR内。在这八个变体中,只有一个位于xxLxLxx基序内。Pi2和Piz - t之间单个氨基酸的相互交换并没有使抗性特异性相互转换,反而消除了两种抗性蛋白的功能。这些结果表明,xxLxLxx基序中的单个氨基酸可能对维持Pi2和Piz - t对其各自无毒蛋白的识别表面至关重要。