Shinada Hiroshi, Yamamoto Toshio, Sato Hirokazu, Yamamoto Eiji, Hori Kiyosumi, Yonemaru Junichi, Sato Takashi, Fujino Kenji
Rice Breeding Group, Kamikawa Agricultural Experiment Station, Local Independent Administrative Agency Hokkaido Research Organization , Minami 1-5, Pippu, Hokkaido 078-0397 , Japan.
Rice Applied Genomics Research Unit, National Institute of Agrobiological Sciences , Kannondai, Tsukuba, Ibaraki 305-8602 , Japan.
Breed Sci. 2015 Dec;65(5):388-95. doi: 10.1270/jsbbs.65.388. Epub 2015 Dec 1.
Plant breeding programs aim to develop cultivars with high adaptability to the specific conditions in a local region. As a result, unique genes and gene combinations have been accumulated in local elite breeding populations during the long history of plant breeding. Genetic analyses on such genes and combinations may be useful for developing new cultivars with more-desirable agronomic traits. Here, we attempted to detect quantitative trait loci (QTL) for rice blast resistance (BR) using a local breeding rice population from Hokkaido, Japan. Using genotyping data on single nucleotide polymorphisms and simple sequence repeat markers distributed throughout the whole genomic region, we detected genetic regions associated with phenotypic variation in BR by a genome-wide association mapping study (GWAS). An additional association analysis using other breeding cultivars verified the effect and inheritance of the associated region. Furthermore, the existence of a gene for BR in the associated region was confirmed by QTL mapping. The results from these studies enabled us to estimate potential of the Hokkaido rice population as a gene pool for improving BR. The results of this study could be useful for developing novel cultivars with vigorous BR in rice breeding programs.
植物育种计划旨在培育出对当地特定条件具有高度适应性的品种。因此,在漫长的植物育种历史中,独特的基因和基因组合已在当地优良育种群体中积累。对这些基因和组合进行遗传分析可能有助于培育出具有更理想农艺性状的新品种。在此,我们尝试利用来自日本北海道的一个当地育种水稻群体检测稻瘟病抗性(BR)的数量性状位点(QTL)。利用分布于整个基因组区域的单核苷酸多态性和简单序列重复标记的基因分型数据,我们通过全基因组关联图谱研究(GWAS)检测到与BR表型变异相关的遗传区域。使用其他育种品种进行的额外关联分析验证了相关区域的效应和遗传方式。此外,通过QTL定位证实了相关区域中存在一个BR基因。这些研究结果使我们能够评估北海道水稻群体作为改善BR基因库的潜力。本研究结果可能有助于在水稻育种计划中培育出具有强大BR的新品种。