Cuthbert Janice L, Somers Daryl J, Brûlé-Babel Anita L, Brown P Douglas, Crow Gary H
Department of Plant Science, University of Manitoba, Winnipeg, MB, Canada R3T 2N2.
Theor Appl Genet. 2008 Aug;117(4):595-608. doi: 10.1007/s00122-008-0804-5. Epub 2008 May 31.
An F1 derived doubled haploid (DH) population of 402 lines from the adapted spring wheat cross Superb (high yielding)/BW278 (low yielding) was developed to identify quantitative trait loci (QTL) associated with yield and yield components. A subset of the population (186 lines) was evaluated in replicated field trials in 2001 and 2002 at six locations in Manitoba and Saskatchewan, Canada. Agronomic parameters, grain yield and yield components including 1,000 grain weight, harvest index, average seed weight spike(-1), seed number spike(-1) and spikes number m(-2) were measured. A genetic map was constructed with 268 microsatellite marker loci and included two morphological genes, reduced plant height, Rht-B1b, and the presence/absence of awns, B1. Composite interval mapping was conducted to estimate the location and effect of QTL associated with the evaluated traits. A total of 53 QTL were identified on 12 chromosomes for the 9 evaluated traits with the coefficient of determination ranging from 0.03 to 0.21 of the total variation. The increase in yield and yield components ranged from 4.5 to 17.1% over the population mean. The five grain yield QTL were detected on chromosomes 1A, 2D, 3B, and 5A and showed a combined increase of 34.4%, over the population mean. The alleles from Superb were associated with increased yield for four of the five QTL. This study identified potential chromosome segments for use in marker-assisted selection to improve yield and yield components in spring wheat.
通过适应性春小麦杂交组合Superb(高产)/BW278(低产)构建了一个由402个株系组成的F1衍生双单倍体(DH)群体,用于鉴定与产量及其构成因素相关的数量性状基因座(QTL)。2001年和2002年,在加拿大曼尼托巴省和萨斯喀彻温省的6个地点对该群体的一个子集(186个株系)进行了重复田间试验。测定了农艺参数、籽粒产量及其构成因素,包括千粒重、收获指数、单穗平均种子重量、单穗粒数和每平方米穗数。利用268个微卫星标记位点构建了遗传图谱,其中包括两个形态学基因,即矮秆基因Rht - B1b和芒的有无基因B1。采用复合区间作图法估计与所评估性状相关的QTL的位置和效应。在12条染色体上共鉴定出53个与9个评估性状相关的QTL,其决定系数占总变异的0.03至0.21。产量及其构成因素的增幅比群体平均值高4.5%至17.1%。在1A、2D、3B和5A染色体上检测到5个籽粒产量QTL,其综合增幅比群体平均值高34.4%。在这5个QTL中,有4个QTL来自Superb的等位基因与产量增加相关。本研究确定了潜在的染色体区段,可用于标记辅助选择,以提高春小麦的产量及其构成因素。