Miura Yuichi, Ding Chenglong, Ozaki Rie, Hirata Mariko, Fujimori Masahiro, Takahashi Wataru, Cai Hongwei, Mizuno Kazuhiko
Forage Crop Research Institute, Japan Grassland Agriculture and Forage Seed Association, 388-5 Higashiakada, Nasushiobara, Tochigi 329-2742, Japan.
Theor Appl Genet. 2005 Sep;111(5):811-8. doi: 10.1007/s00122-005-0001-8. Epub 2005 Oct 18.
Ryegrass blast, also called gray leaf spot, is caused by the fungus Pyricularia sp. It is one of the most serious diseases of Italian ryegrass (Lolium multiflorum Lam.) in Japan. We analyzed segregation of resistance in an F(1) population from a cross between a resistant and a susceptible cultivar. The disease severity distribution in the F(1) population suggested that resistance was controlled by a major gene (Lm Pi1). Analysis of amplified fragment length polymorphisms with bulked segregant analysis identified several markers tightly linked to Lm Pi1. To identify other markers linked to Lm Pi1, we used expressed sequence tag-cleaved amplified polymorphic sequence (EST-CAPS) markers mapped in a reference population of Italian ryegrass. Of the 30 EST-CAPS markers screened, one marker, p 56, flanking the Lm Pi1 locus was found. The restriction pattern of p 56 amplification showed a unique fragment corresponding to the resistant allele at the Lm Pi1 locus. A linkage map constructed from the reference population showed that the Lm Pi1 locus was located in linkage group 5 of Italian ryegrass. Genotype results obtained from resistant and susceptible cultivars indicate that the p 56 marker is useful for introduction of the Lm Pi1 gene into susceptible germ plasm in order to develop ryegrass cultivars with enhanced resistance to ryegrass blast.
黑麦草瘟病,也称为灰斑病,由稻梨孢菌引起。它是日本多花黑麦草(Lolium multiflorum Lam.)最严重的病害之一。我们分析了一个由抗性品种和感病品种杂交产生的F(1)群体中的抗性分离情况。F(1)群体中的病害严重程度分布表明,抗性由一个主基因(Lm Pi1)控制。通过混合分组分析法对扩增片段长度多态性进行分析,鉴定出了几个与Lm Pi1紧密连锁的标记。为了鉴定与Lm Pi1连锁的其他标记,我们使用了在多花黑麦草参考群体中定位的表达序列标签切割扩增多态序列(EST-CAPS)标记。在筛选的30个EST-CAPS标记中,发现了一个位于Lm Pi1基因座侧翼的标记p 56。p 56扩增的限制性图谱显示了一个与Lm Pi1基因座上抗性等位基因相对应的独特片段。从参考群体构建的连锁图谱表明,Lm Pi1基因座位于多花黑麦草的第5连锁群中。从抗性和感病品种获得的基因型结果表明,p 56标记对于将Lm Pi1基因导入感病种质以培育对黑麦草瘟病具有增强抗性的黑麦草品种很有用。