Iefimenko T S, Fedak Yu G, Antonyuk M Z, Ternovska T K
Tsitol Genet. 2015 May-Jun;49(3):45-54.
Introgressive hybridization of common wheat is still one of the most effective way of wheat genome enrichment with resistance genes to stresses. In this context, T genome of Amblyopyrum muticum is a promising one for such wheat improvement. Genome substitution amphidiploid Aurotica (AABBTT) with A and B subgenomes from common wheat cultivar Aurora and with T subgenome from Amblyopyrum muticum is characterized by high level of cold resistance. In wheat, this characteristic associated with chromosomes of the homoeologous group 5. Comparative microsatellite analysis of Aurora and Aurotica identified 9 SSR loci specific to D genome which produced other amplicons with Aurotica DNA spectrum. Primers for these loci were used for screening (Aurora x Aurotica)F5 progeny (234 plants) in purpose to find those individuals, which carry 5T chromosome or its fragments in their genomes. In this study were detected 24 plants with disomic substitutions 5D/5T. All of them were offspring of five F4 plants, which in turn derived from two F2 individuals. A significant number of plants contain recombinant chromosome 5D/5T. The recombination event could occur in any generation since F2.
普通小麦的渐渗杂交仍然是小麦基因组富集抗逆基因最有效的方法之一。在此背景下,多节披碱草的T基因组对于小麦改良具有很大潜力。基因组代换双二倍体奥罗蒂卡(AABBTT),其A和B亚基因组来自普通小麦品种奥罗拉,T亚基因组来自多节披碱草,具有高耐寒性。在小麦中,这一特性与同源群5的染色体有关。对奥罗拉和奥罗蒂卡进行的比较微卫星分析确定了9个D基因组特异的SSR位点,这些位点与奥罗蒂卡的DNA谱产生了其他扩增子。这些位点的引物用于筛选(奥罗拉×奥罗蒂卡)F5后代(234株植株),目的是找到那些基因组中携带5T染色体或其片段的个体。在本研究中检测到24株具有5D/5T二体代换的植株。它们都是5个F4植株的后代,而这5个F4植株又源自2个F2个体。大量植株含有重组染色体5D/5T。重组事件可能自F2代起在任何一代发生。