Gao Zhenxian, Shi Zhanliang, Zhang Aimin, Guo Jinkao
Shijiazhuang Academy of Agriculture and Forestry Sciences, Shijiazhuang, Hebei 050041, People's Republic of China.
J Genet. 2015 Mar;94(1):35-42. doi: 10.1007/s12041-015-0472-6.
Functional markers (FMs) developed from sequence polymorphisms are present in allelic variants of a functional gene at a locus and are directly associated with phenotypic variations. In this study, FM linked to Rht-B1, Rht-D1, TaCwi-A1, TaSus2-2B, TaGW2-6A and Dreb-B1 genes conferring to yield potential and water-saving were selected to analyse the distribution in 102 wheat varieties, most of which were authorized in the past decade and adapted to grow in Zone II of China. First, the semidwarfing genes Rht-B1b and Rht-D1b (mutant alleles) conferring to grain yield were analysed. The frequencies of favourable alleles Rht-B1b and Rht-D1b were 32.4 and 58.8%, respectively. Comparing with the previous report, the frequency of Rht-B1b among cultivars in this study is similar to the frequency among cultivars released in the 1990s, while the frequency of Rht-D1b is slightly lower than the previous report 63.9%. Twelve (11.8%) cultivars neither contained Rht-B1b nor Rht-D1b, while only Yumai 66 contained both semidwarfing genes. Linyuan8 and Xinong 928 are heterozygous at RhtB1 locus and Zhengmai 9023 is heterozygous at both RhtB1 and Rht-D1 loci. Second, the TaCwi-A1, TaSus2-2B and TaGW2-6A genes considered as candidate genes related to grain weight were detected. We found that the frequencies of the favourable alleles were 76.5, 56.9 and 69.6%, respectively. Among the 102 wheat varieties, 30 contained all the three favourable genes, 45 contained two of the three favourable genes and 27 contained only one. There are eight wheat varieties (7.8%) in hybrid state at the TaCWI-A1 locus. Third, the designed FM linked to water-saving gene Dreb-B1 were validated on 102 wheat varieties. The results showed that the haplotypes of 47 wheat varieties at the Dreb-B1 locus were same as that of Opata 85, and 55 wheat varieties showed the signal expected for W7984 (Opata 85 and W7984 are parents of the ITMI mapping population). This information will be useful for the wheat breeding programmes aiming at improving yield and water use efficiency in Shijiazhuang located in China Zone II.
由序列多态性开发的功能标记(FMs)存在于一个位点上功能基因的等位变异中,并与表型变异直接相关。在本研究中,选择了与赋予产量潜力和节水能力的Rht-B1、Rht-D1、TaCwi-A1、TaSus2-2B、TaGW2-6A和Dreb-B1基因相关的功能标记,来分析102个小麦品种中的分布情况,其中大部分品种是在过去十年中审定的,适合在中国II区种植。首先,分析了赋予籽粒产量的半矮秆基因Rht-B1b和Rht-D1b(突变等位基因)。有利等位基因Rht-B1b和Rht-D1b的频率分别为32.4%和58.8%。与之前的报道相比,本研究中品种中Rht-B1b的频率与20世纪90年代发布的品种中的频率相似,而Rht-D1b的频率略低于之前报道的63.9%。12个(11.8%)品种既不含有Rht-B1b也不含有Rht-D1b,而只有豫麦66同时含有这两个半矮秆基因。临远8和西农928在RhtB1位点是杂合的,郑麦9023在RhtB1和Rht-D1位点都是杂合的。其次,检测了被认为与粒重相关的候选基因TaCwi-A1、TaSus2-2B和TaGW2-6A。我们发现有利等位基因的频率分别为76.5%、56.9%和69.6%。在102个小麦品种中,30个含有所有三个有利基因,45个含有三个有利基因中的两个,27个只含有一个。有8个小麦品种(7.8%)在TaCWI-A1位点处于杂合状态。第三,在102个小麦品种上验证了与节水基因Dreb-B1相关的设计功能标记。结果表明,47个小麦品种在Dreb-B1位点的单倍型与Opata 85相同,55个小麦品种显示出与W7984预期的信号(Opata 85和W7984是ITMI作图群体的亲本)。这些信息将有助于旨在提高位于中国II区石家庄的小麦育种计划的产量和水分利用效率。