Phytopathology. 2007 May;97(5):598-602. doi: 10.1094/PHYTO-97-5-0598.
ABSTRACT Partial resistance to rice blast in the Oryza sativa japonica group cv. Chubu 32 is controlled by Pi34, a major quantitative trait locus (QTL) on chromosome 11, and several uncharacterized QTLs. The objectives of the study were (i) high-resolution genetic and physical mapping of Pi34 and (ii) identification of new QTL imparting resistance to rice blast. Chubu 32 was crossed with a susceptible chromosomal segment substitution line (CSSL) of cv. Koshihikari. From 4,012 of segregating individuals, 213 recombinants in the Pi34 region were screened by using polymerase chain reaction-based markers and tested resistance in the field and greenhouse. The Pi34 locus is located in the 54.1-kb region on the genomic sequence of cv. Nipponbare. We constructed a bacterial artificial chromosome (BAC) library of Chubu 32, selected the clone containing Pi34, and sequenced it. The Pi34 locus consequently was located on an interval of 65.3 kb containing 10 predicted open reading frames (ORFs). Two of these ORFs were predicted only in Chubu 32 and encoded transposable elements. The other eight ORFs were found in both Chubu 32 and Nipponbare and one of them, which encoded an unknown protein, showed significantly different amino acid sequences between two cultivars. The new QTL, Piq6(t), was detected on the short arm of chromosome 6 and the genetic distance of flanking markers was 16.9 centimorgans in Nipponbare. Pi34 and Piq6(t) acted additively on resistance to rice blast but the effect of Piq6(t) was relatively small compared with Pi34.
日本籼稻品种群 Chubu32 对稻瘟病的部分抗性由位于第 11 染色体上的主要数量性状位点(QTL)Pi34 和几个未被阐明的 QTL 控制。本研究的目的是(i)对 Pi34 进行高分辨率的遗传和物理作图,(ii)鉴定赋予稻瘟病抗性的新 QTL。将 Chubu32 与感病的 Koshihikari 染色体片段代换系(CSSL)进行杂交。从 4012 个分离个体中,通过聚合酶链反应(PCR)为基础的标记筛选出 Pi34 区域的 213 个重组体,并在田间和温室中进行抗性测试。Pi34 基因位于 Nipponbare 基因组序列的 54.1-kb 区域。我们构建了 Chubu32 的细菌人工染色体(BAC)文库,选择包含 Pi34 的克隆并进行测序。Pi34 基因座位于包含 10 个预测开放阅读框(ORF)的 65.3-kb 区间内。其中两个 ORF 仅在 Chubu32 中预测,并编码转座元件。其他 8 个 ORF 在 Chubu32 和 Nipponbare 中都有发现,其中一个编码未知蛋白的 ORF 在两个品种中表现出显著不同的氨基酸序列。新的 QTL Piq6(t) 被检测到位于第 6 号染色体的短臂上,在 Nipponbare 中侧翼标记的遗传距离为 16.9 厘摩。Pi34 和 Piq6(t) 对稻瘟病的抗性呈累加作用,但与 Pi34 相比,Piq6(t) 的作用相对较小。