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Novel microsatellite markers for the high-alpine Geum reptans (Rosaceae)

机译:新型的微卫星标记用于高高山锦葵(蔷薇科)

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摘要

• Premise of the study: Geum reptans reproduces by outcrossing or by the formation of stolons. Sexual and clonal reproduction are not exclusive and occur mostly simultaneously. We developed novel microsatellite primers for this species, which will be used in a study about local adaptation, phenotypic plasticity, and random molecular divergence of alpine plants.• Methods and Results: Twelve microsatellite primer sets were developed for G. reptans, of which nine were polymorphic. Initially, the forward primers had an M13 tail, and the allelic signals of each locus were amplified using a single fluorescent-labeled M13 forward sequence. In the running phase, a multiplex PCR assay was developed using different fluorophore-labeled forward primers. Two to 11 alleles were found per locus, depending on the studied population.• Conclusions: Identical multilocus genotypes (i.e., clonal offspring) were not found because individuals in our sampling were at least 4 m distant from each other. FST–QST analysis will be applied to detect selection processes in populations of G. reptans across the Alps.
机译:•研究的前提:锦葵属植物通过异型杂交或茎形成而繁殖。有性和无性繁殖并非排他性的,并且大多同时发生。我们为该物种开发了新型微卫星引物,这些引物将用于研究高山植物的局部适应性,表型可塑性和随机分子发散性。•方法与结果:为十二生菜开发了十二种微卫星引物组,其中九种是多态的。最初,正向引物具有M13尾部,并使用单个荧光标记的M13正向序列扩增每个基因座的等位基因信号。在运行阶段,使用不同的荧光团标记的正向引物进行了多重PCR分析。每个位点发现2至11个等位基因,具体取决于所研究的人群。结论:未发现相同的多位点基因型(即克隆后代),因为我们样本中的个体彼此之间至少相距4 m。 FST-QST分析将被用于检测整个阿尔卑斯地区瑞格氏菌种群的选择过程。

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