Zhang Jie, Jiang Yun, Xuan Pu, Guo Yuanlin, Deng Guangbing, Yu Maoqun, Long Hai
Institute of Biotechnology and Nuclear Technology Research, Sichuan Academy of Agricultural Sciences, Chengdu, 610061, Sichuan, China.
Key Laboratory of Wheat Biology and Genetic Improvement on Southwestern China (Ministry of Agriculture), Chengdu, 610066, Sichuan, China.
Genetica. 2017 Oct;145(4-5):371-378. doi: 10.1007/s10709-017-9972-z. Epub 2017 Jun 21.
Dasypyrum villosum is a valuable genetic resource for wheat improvement. With the aim to efficiently monitor the D. villosum chromatin introduced into common wheat, two novel retrotransposon sequences were isolated by RAPD, and were successfully converted to D. villosum-specific SCAR markers. In addition, we constructed a chromosomal karyotype of D. villosum. Our results revealed that different accessions of D. villosum showed slightly different signal patterns, indicating that distribution of repeats did not diverge significantly among D. villosum accessions. The two SCAR markers and FISH karyotype of D. villosum could be used for efficient and precise identification of D. villosum chromatin in wheat breeding.
簇毛麦是小麦改良的重要遗传资源。为了有效监测导入普通小麦的簇毛麦染色质,通过随机扩增多态性DNA分析分离出两个新的反转录转座子序列,并成功转化为簇毛麦特异性序列特征扩增区域标记。此外,我们构建了簇毛麦的染色体核型。结果表明,不同的簇毛麦种质显示出略有不同的信号模式,这表明重复序列在簇毛麦种质间的分布差异不显著。这两个序列特征扩增区域标记和簇毛麦的荧光原位杂交核型可用于在小麦育种中高效、精确地鉴定簇毛麦染色质。