Jakobson Irena, Peusha Hilma, Timofejeva Ljudmilla, Järve Kadri
Department of Gene Technology, Tallinn University of Technology, Akadeemia tee 15, 19086, Tallinn, Estonia.
Theor Appl Genet. 2006 Feb;112(4):760-9. doi: 10.1007/s00122-005-0181-2. Epub 2005 Dec 17.
In the progeny of a cross between the common wheat cultivar Tähti and Triticum militinae, a member of the timopheevii group of tetraploid wheats, several hybrid lines were selected that are characterized by improved seedling and adult plant resistance (APR) to powdery mildew. An F2 single-seed descendant mapping population segregating for seedling resistance and APR to powdery mildew was analysed for the identification of quantitative trait loci (QTL). The main QTL responsible for APR was detected on the long arm of chromosome 4A tightly linked to the Xgwm160 locus on a T. militinae translocation explaining up to 54% of phenotypic variance. The same translocation influenced seedling resistance to powdery mildew upon inoculation of plants with a synthetic population of Blumeria graminis DC. f. sp. tritici, and explained 28-33% of the phenotypic variance.
在普通小麦品种“泰hti”与四倍体小麦提莫菲维组的成员“密穗小麦”杂交的后代中,选择了几个杂种系,其特征是对白粉病的幼苗和成株抗性(APR)有所提高。分析了一个F2单粒后代定位群体,该群体在幼苗抗性和对白粉病的成株抗性方面存在分离,以鉴定数量性状位点(QTL)。负责成株抗性的主要QTL在4A染色体长臂上被检测到,与密穗小麦易位系上的Xgwm160位点紧密连锁,可解释高达54%的表型变异。在用小麦白粉病菌(Blumeria graminis DC. f. sp. tritici)的合成群体接种植物后,相同的易位影响了幼苗对白粉病的抗性,并解释了28%-33%的表型变异。