Bryan G T, Wu K S, Farrall L, Jia Y, Hershey H P, McAdams S A, Faulk K N, Donaldson G K, Tarchini R, Valent B
DuPont Agricultural Products, P.O. Box 80402, Wilmington, Delaware 19880-0402, USA.
Plant Cell. 2000 Nov;12(11):2033-46. doi: 10.1105/tpc.12.11.2033.
The rice blast resistance (R) gene Pi-ta mediates gene-for-gene resistance against strains of the fungus Magnaporthe grisea that express avirulent alleles of AVR-Pita. Using a map-based cloning strategy, we cloned Pi-ta, which is linked to the centromere of chromosome 12. Pi-ta encodes a predicted 928-amino acid cytoplasmic receptor with a centrally localized nucleotide binding site. A single-copy gene, Pi-ta shows low constitutive expression in both resistant and susceptible rice. Susceptible rice varieties contain pi-ta(-) alleles encoding predicted proteins that share a single amino acid difference relative to the Pi-ta resistance protein: serine instead of alanine at position 918. Transient expression in rice cells of a Pi-ta(+) R gene together with AVR-Pita(+) induces a resistance response. No resistance response is induced in transient assays that use a naturally occurring pi-ta(-) allele differing only by the serine at position 918. Rice varieties reported to have the linked Pi-ta(2) gene contain Pi-ta plus at least one other R gene, potentially explaining the broadened resistance spectrum of Pi-ta(2) relative to Pi-ta. Molecular cloning of the AVR-Pita and Pi-ta genes will aid in deployment of R genes for effective genetic control of rice blast disease.
水稻抗稻瘟病(R)基因Pi-ta介导对稻瘟病菌(Magnaporthe grisea)菌株的基因对基因抗性,这些菌株表达无毒基因AVR-Pita的等位基因。我们采用基于图谱的克隆策略克隆了Pi-ta,它与第12号染色体的着丝粒相连。Pi-ta编码一个预测的928个氨基酸的细胞质受体,其核苷酸结合位点位于中央。Pi-ta是一个单拷贝基因,在抗性和感病水稻中均表现出低水平的组成型表达。感病水稻品种含有pi-ta(-)等位基因,其编码的预测蛋白与Pi-ta抗性蛋白相比有一个氨基酸差异:第918位是丝氨酸而非丙氨酸。Pi-ta(+) R基因与AVR-Pita(+)在水稻细胞中的瞬时表达诱导了抗性反应。在瞬时试验中,使用仅在第918位丝氨酸不同的天然pi-ta(-)等位基因不会诱导抗性反应。据报道具有连锁Pi-ta(2)基因的水稻品种含有Pi-ta以及至少一个其他R基因,这可能解释了Pi-ta(2)相对于Pi-ta抗性谱的拓宽。AVR-Pita和Pi-ta基因的分子克隆将有助于R基因的部署,以有效遗传控制稻瘟病。