Center for Agricultural Resources Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Shijiazhuang, 050021, China.
Theor Appl Genet. 2015 Apr;128(4):613-22. doi: 10.1007/s00122-015-2457-5. Epub 2015 Feb 12.
An allele of Pm2 for wheat powdery mildew resistance was identified in a putative Agropyron cristatum -derived line and used in wheat breeding programs. Powdery mildew (caused by Blumeria graminis f. sp. tritici, Bgt) is one of the most devastating wheat diseases worldwide. It is important to exploit varied sources of resistance from common wheat and its relatives in resistance breeding. KM2939, a Chinese breeding line, exhibits high resistance to powdery mildew at both the seedling and adult stages. It carries a single dominant powdery mildew resistance (Pm) allele of Pm2, designated Pm2b, the previous allelic designation Pm2 will be re-designated as Pm2a. Pm2b was mapped to chromosome arm 5DS and flanked by sequence characterized amplified region (SCAR) markers SCAR112 and SCAR203 with genetic distances of 0.5 and 1.3 cM, respectively. Sequence tagged site (STS) marker Mag6176 and simple sequence repeat (SSR) marker Cfd81 co-segregated with SCAR203. Pm2b differs in specificity from donors of Pm2a, Pm46 and PmLX66 on chromosome arm 5DS. Allelism tests indicated that Pm2b, Pm2a and PmLX66 are allelic. Therefore, Pm2b appears to be a new allele at the Pm2 locus. The closely linked markers were used to accelerate transfer of Pm2b to wheat cultivars in current production.
小麦抗白粉病基因 Pm2 的一个等位基因在一个假定的偃麦草衍生系中被鉴定出来,并被用于小麦育种计划。白粉病(由小麦白粉菌引起,Bgt)是世界范围内最具破坏性的小麦病害之一。在抗性育种中,利用普通小麦及其近缘种的不同来源的抗性是很重要的。KM2939 是一个中国的育成系,在幼苗和成株期均表现出对白粉病的高度抗性。它携带一个单一的显性白粉病抗性(Pm)等位基因 Pm2,命名为 Pm2b,以前的等位基因命名 Pm2 将重新命名为 Pm2a。Pm2b 被定位在 5DS 染色体臂上,由序列特征扩增区域(SCAR)标记 SCAR112 和 SCAR203 侧翼,遗传距离分别为 0.5 和 1.3 cM。序列标签位点(STS)标记 Mag6176 和简单序列重复(SSR)标记 Cfd81 与 SCAR203 共分离。Pm2b 在 5DS 染色体臂上与 Pm2a、Pm46 和 PmLX66 的特异性不同。等位基因测试表明,Pm2b、Pm2a 和 PmLX66 是等位基因。因此,Pm2b 似乎是 Pm2 基因座的一个新等位基因。紧密连锁的标记被用于加速将 Pm2b 转移到当前生产中的小麦品种中。