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STS markers for powdery mildew resistance gene Pm6 in wheat

机译:小麦抗白粉病基因Pm6的STS标记

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The powdery mildew resistance gene Pm6, transferred to common wheat from the tetraploid Triticum timopheevii, is effective in most epidemic areas for powdery mildew in China. RFLP probe BCD135 was previously associated with Pm6. In the present research, four STS primers (NAU/STSBCD135-1, NAU/STSBCD135-2, STS003 and STS004) were designed from the sequence data of BCD135. These primers were used for PCR amplification using the genomic DNA of resistant near-isogenic lines with Pm6 and their recurrent parent, cv. Prins. No polymorphic product was observed using primers STS003 and STS004; however, primers NAU/STSBCD135-1 and NAU/STSBCD135-2 amplified two and one bands, respectively, polymorphic between the resistant near-isogenic-lines and Prins. The two primers were then used to amplify the F2 population from the cross IGV1-465 (FAO163b/7*Prins) × Prins. The amplification and the powdery mildew resistance identification data were analyzed using the software Mapmaker 3.0. The results indicated that both NAU/STSBCD135-1 and NAU/STSBCD135-2 were closely linked to Pm6 with a genetic distance of 0.8 cM. A total of 175 commercial varieties without Pm6 from different ecological areas of China were tested using marker NAU/STSBCD135-2 and none of them amplified the 230 bp-specific band. This marker thus has high practicability and can be used in MAS of Pm6 in wheat breeding programs for powdery mildew resistance.
机译:从四倍体小麦粉虱转入普通小麦的抗白粉病基因Pm6在中国大多数流行的白粉病地区均有效。 RFLP探针BCD135先前与Pm6相关。在本研究中,从BCD135的序列数据设计了四种STS引物(NAU / STS BCD135-1 ,NAU / STS BCD135-2 ,STS003和STS004)。这些引物用于使用具有Pm6及其抗性亲本cv的抗近等基因系的基因组DNA进行PCR扩增。王子使用引物STS003和STS004未观察到多态产物。然而,引物NAU / STS BCD135-1 和NAU / STS BCD135-2 分别扩增了两个和一个条带,在抗性近等基因系和Prins之间具有多态性。然后使用这两种引物从杂交IGV1-465(FAO163b / 7 * Prins)×Prins扩增F 2 群体。使用Mapmaker 3.0软件分析扩增和抗白粉病鉴定数据。结果表明,NAU / STS BCD135-1 和NAU / STS BCD135-2 都与Pm6紧密相连,遗传距离为0.8 cM。利用NAU / STS BCD135-2 标记对来自中国不同生态区域的175个无Pm6的商业品种进行了测试,没有一个扩增了230 bp的特异性条带。因此,该标记物具有较高的实用性,可以在小麦育种计划中的Pm6的MAS中用于抗白粉病。

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