Jeon J-S, Chen D, Yi G-H, Wang G L, Ronald P C
Department of Plant Pathology, University of California, One Shields Avenue, Davis 95616, USA.
Mol Genet Genomics. 2003 May;269(2):280-9. doi: 10.1007/s00438-003-0834-2. Epub 2003 Mar 19.
To gain an understanding of the molecular basis for resistance to rice blast (Magnaporthe grisea), we have initiated a project to clone Pi5(t), a locus associated with broad-spectrum resistance to diverse blast isolates. AFLP-derived markers linked to Pi5(t)-mediated resistance were isolated using bulked segregant analysis of F(2) populations generated by crossing three recombinant inbred lines (RILs), RIL125, RIL249, and RIL260 with the susceptible line CO39. The most tightly linked AFLP marker, S04G03, was positioned on chromosome 9 of the fingerprint-based physical map of Nipponbare, a well-characterized rice genotype. Flanking BAC-based Nipponbare markers were generated for saturation mapping using four populations, the three initial RILs and an additional one derived from a cross between M202 and RIL260. A BIBAC (binary BAC) library was constructed from RIL260. Using these resources Pi5(t) was mapped to a 170-kb interval, and a contiguous set of BIBAC clones spanning this region was constructed. It had previously been suggested that Pi3(t) and Pi5(t) might be allelic, due to their identical resistance spectrum and tight linkage. We therefore compared genomic regions for lines containing Pi3(t) using the Pi5(t)-linked markers. DNA gel-blot analyses indicated that the region around Pi3(t) is identical to that of Pi5(t), suggesting that Pi3(t) and Pi5(t) are the same resistance gene.
为了了解水稻对稻瘟病(稻瘟病菌)抗性的分子基础,我们启动了一个项目来克隆Pi5(t),这是一个与对多种稻瘟病菌株具有广谱抗性相关的基因座。通过将三个重组自交系(RILs)RIL125、RIL249和RIL260与感病品系CO39杂交产生的F(2)群体进行混合分离分析,分离出了与Pi5(t)介导的抗性相关的AFLP衍生标记。与Pi5(t)连锁最紧密的AFLP标记S04G03位于日本晴指纹图谱物理图谱的第9号染色体上,日本晴是一个特征明确的水稻基因型。利用四个群体(三个初始RILs以及另外一个由M202与RIL260杂交产生的群体)产生基于BAC的日本晴侧翼标记,用于饱和作图。从RIL260构建了一个BIBAC(二元BAC)文库。利用这些资源,将Pi5(t)定位到一个170 kb的区间,并构建了跨越该区域的一组连续的BIBAC克隆。此前曾有人提出Pi3(t)和Pi5(t)可能是等位基因,因为它们具有相同的抗性谱且连锁紧密。因此,我们使用与Pi5(t)连锁的标记比较了含有Pi3(t)的品系的基因组区域。DNA凝胶印迹分析表明,Pi3(t)周围的区域与Pi5(t)的区域相同,这表明Pi3(t)和Pi5(t)是同一个抗性基因。