为明确我国小麦条锈菌Puccinia striiformis f. sp. tritici主要越夏地区的群体遗传结构及演变情况,利用SSR荧光检测技术,对甘肃省甘谷县2013-2015年期间连续5个小麦生长季采集的141株小麦条锈菌单孢系基因组DNA进行分子标记分析,对小麦条锈菌季节亚群的遗传多样性进行分析。结果表明,甘谷地区小麦条锈菌的遗传多样性丰富,有效等位基因数为1.71,Shannon信息指数为0.66,2014年秋季(2014A)亚群体的基因型多样性低于其余亚群体。分子变异方差分析结果显示,小麦条锈菌季节亚群体间变异仅占21%,变异主要出现在亚群体内部,表明甘谷地区各季节亚群体间遗传分化水平差异较小,小麦条锈菌群体在一个小范围内基本能维持稳定状态。主坐标分析(PCoA)、遗传分化、基因流以及共享基因型分析均表明2014年秋季(2014A)亚群体的遗传结构与相邻季节亚群体存在一定差异,表明越夏过程对甘谷地区个别年份小麦条锈菌群体周年稳定性造成较大的影响,越冬过程对小麦条锈菌群体的影响相对较小,春季受外来菌源干扰的可能性较低。
Wheat powdery mildew(Blumeria graminis f.sp.tritici) is the one of main wheat diseases in China.Based on the internal transcribed spacer(ITS) sequences of ribosome of B.graminis f.sp.tritici,three molecular primer pairs(F1/R,F2/R and F3/R) were designed to detect the fungal pathogen of wheat powdery mildew.The species specificity of these primers was confirmed.F1/R was demonstrated a higher sensitivity than the other two primer pairs,and could detect as low as 1 pg DNA of B.graminis f.sp.tritici.Furthermore,F1/R primer pair was used to detect the pathogen DNA extracted from wheat leaves showing chlorosis and typical symptoms of powdery mildew caused by artificial inoculation with B.graminis f.sp.tritici.The preliminary results demonstrated the usefulness of this primer pair and its potential applications in efficient detection of wheat powdery mildew pathogen from leaves with latent infections at early growth stages of wheat.