Liu Z H, Anderson J A, Hu J, Friesen T L, Rasmussen J B, Faris J D
Department of Plant Pathology, North Dakota State University, Fargo, ND 58105, USA.
Theor Appl Genet. 2005 Aug;111(4):782-94. doi: 10.1007/s00122-005-2064-y. Epub 2005 Jul 15.
Efficient user-friendly methods for mapping plant genomes are highly desirable for the identification of quantitative trait loci (QTLs), genotypic profiling, genomic studies, and marker-assisted selection. SSR (microsatellite) markers are user-friendly and efficient in detecting polymorphism, but they detect few loci. Target region amplification polymorphism (TRAP) is a relatively new PCR-based technique that detects a large number of loci from a single reaction without extensive pre-PCR processing of samples. In the investigation reported here, we used both SSRs and TRAPs to generate over 700 markers for the construction of a genetic linkage map in a hard red spring wheat intervarietal recombinant inbred population. A framework map consisting of 352 markers accounted for 3,045 cM with an average density of one marker per 8.7 cM. On average, SSRs detected 1.9 polymorphic loci per reaction, while TRAPs detected 24. Both marker systems were suitable for assigning linkage groups to chromosomes using wheat aneuploid stocks. We demonstrated the utility of the maps by identifying major QTLs for days to heading and reduced plant height on chromosomes 5A and 4B, respectively. Our results indicate that TRAPs are highly efficient for genetic mapping in wheat. The maps developed will be useful for the identification of quality and disease resistance QTLs that segregate in this population.
高效且用户友好的植物基因组作图方法对于数量性状基因座(QTL)的鉴定、基因型分析、基因组研究以及标记辅助选择而言是非常必要的。简单序列重复(SSR,微卫星)标记对用户友好且在检测多态性方面效率高,但它们检测到的基因座较少。目标区域扩增多态性(TRAP)是一种相对较新的基于PCR的技术,可在无需对样品进行广泛的PCR前处理的情况下,从单个反应中检测大量基因座。在本文报道的研究中,我们使用SSR和TRAP生成了700多个标记,用于构建硬粒红色春小麦品种间重组自交群体的遗传连锁图谱。由352个标记组成的框架图谱覆盖3045厘摩,平均密度为每8.7厘摩一个标记。平均而言,每个SSR反应检测到1.9个多态性基因座,而TRAP反应检测到24个。这两种标记系统都适用于利用小麦非整倍体系将连锁群定位到染色体上。我们通过分别鉴定5A和4B染色体上抽穗天数和株高降低的主要QTL,证明了这些图谱的实用性。我们的结果表明,TRAP在小麦遗传作图中效率很高。所构建的图谱将有助于鉴定该群体中分离的品质和抗病性QTL。