首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Mapping with RAD (restriction-site associated DNA) markers to rapidly identify QTL for stem rust resistance in Lolium perenne
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Mapping with RAD (restriction-site associated DNA) markers to rapidly identify QTL for stem rust resistance in Lolium perenne

机译:用RAD(限制性酶切位点相关DNA)标记进行定位,以快速鉴定黑麦草茎抗锈病的QTL

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A mapping population was created to detect quantitative trait loci (QTL) for resistance to stem rust caused by Puccinia graminis subsp. graminicola in Lolium perenne. A susceptible and a resistant plant were crossed to produce a pseudo-testcross population of 193 F-1 individuals. Markers were produced by the restriction-site associated DNA (RAD) process, which uses massively parallel and multiplexed sequencing of reduced-representation libraries. Additional simple sequence repeat (SSR) and sequence-tagged site (STS) markers were combined with the RAD markers to produce maps for the female (738 cM) and male (721 cM) parents. Stem rust phenotypes (number of pustules per plant) were determined in replicated greenhouse trials by inoculation with a field-collected, genetically heterogeneous population of urediniospores. The F-1 progeny displayed continuous distribution of phenotypes and transgressive segregation. We detected three resistance QTL. The most prominent QTL (qLpPg1) is located near 41 cM on linkage group (LG) 7 with a 2-LOD interval of 8 cM, and accounts for 30-38% of the stem rust phenotypic variance. QTL were detected also on LG1 (qLpPg2) and LG6 (qLpPg3), each accounting for approximately 10% of phenotypic variance. Alleles of loci closely linked to these QTL originated from the resistant parent for qLpPg1 and from both parents for qLpPg2 and qLpPg3. Observed quantitative nature of the resistance may be due to partial-resistance effects against all pathogen genotypes, or qualitative effects completely preventing infection by only some genotypes in the genetically mixed inoculum. RAD markers facilitated rapid construction of new genetic maps in this outcrossing species and will enable development of sequence-based markers linked to stem rust resistance in L. perenne.
机译:创建了一个测绘种群,以检测定量特征位点(QTL)对由小麦杆锈菌亚种引起的茎锈病的抗性。黑麦草中的graminicola。将易感植物和抗性植物杂交以产生193 F-1个体的假-testcross种群。标记是通过限制性位点相关的DNA(RAD)过程产生的,该过程使用了减少表示形式库的大规模并行和多重测序。将其他简单序列重复(SSR)和序列标记位点(STS)标记与RAD标记结合使用,可绘制出雌性(738 cM)和雄性(721 cM)亲本的图谱。在重复的温室试验中,通过接种野外收集的遗传上异质的孢子虫孢子来确定茎锈病的表型(每株小脓疱的数量)。 F-1后代表现出连续的表型分布和海侵分离。我们检测到三个抗性QTL。最突出的QTL(qLpPg1)位于连锁群(LG)7上41 cM附近,2-LOD间隔为8 cM,占茎锈表型变异的30-38%。在LG1(qLpPg2)和LG6(qLpPg3)上也检测到QTL,每个约占表型变异的10%。与这些QTL密切相关的基因座等位基因来自qLpPg1的抗性亲本,以及qLpPg2和qLpPg3的两个亲本。观察到的抗药性的定量性质可能是由于对所有病原体基因型具有部分抗药性,或者是定性作用完全阻止了基因混合接种物中某些基因型的感染。 RAD标记促进了这一异交物种的新遗传图谱的快速构建,并将促进与紫苏病原菌抗茎锈性相关的基于序列的标记的开发。

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