Cichorz Sandra, Gośka Maria, Litwiniec Anna
Research Division in Bydgoszcz, Department of Genetics and Breeding of Root Crops, Plant Breeding and Acclimatization Institute - National Research Institute, Powstańców Wielkopolskich 10, 85-090, Bydgoszcz, Poland,
Mol Biotechnol. 2014 Oct;56(10):911-24. doi: 10.1007/s12033-014-9770-0.
Due to the limited number of molecular studies focused on European gene pool investigation, it is necessary to perform plant material recognition. Eighteen accessions of three Miscanthus species, namely, M. × giganteus, M. sinensis, M. sacchariflorus were evaluated with the use of molecular marker systems such as: inter simple sequence repeats (ISSRs), random amplified polymorphic DNA (RAPD), and by estimation of ploidy level based on flow cytometry. As a result, only one ISSR primer (ISSR1) and three RAPD primers (RAPD1, RAPD2, RAPD4) were required to identify all genotypes. Moreover, the use of the above mentioned molecular markers enable the proper species recognition of the interspecific hybrid M. × giganteus "Floridulus," which has been previously mislabeled as M. floridulus. The highest genetic similarity coefficient (0.94) was observed between M. × giganteus clones, which indicates that the genetic diversity within this species was very low. Whereas M. sinensis genotypes represented a relatively wide diversity with similarity coefficient of 0.58. Cluster analysis using UPGMA grouped the 18 accessions in three clusters according to species affiliation including relabeled M. × giganteus "Floridulus," which proved to be closely related to M. × giganteus. Similar groupings were evident in the PCoA analysis.
由于专注于欧洲基因库调查的分子研究数量有限,因此有必要对植物材料进行识别。使用分子标记系统,如简单重复序列区间(ISSR)、随机扩增多态性DNA(RAPD),并通过流式细胞术估计倍性水平,对三种芒属植物的18份材料进行了评估,这三种芒属植物分别是:巨芒(M. × giganteus)、芒草(M. sinensis)、荻草(M. sacchariflorus)。结果表明,仅需一种ISSR引物(ISSR1)和三种RAPD引物(RAPD1、RAPD2、RAPD4)就能识别所有基因型。此外,使用上述分子标记能够正确识别种间杂交种巨芒“弗洛里杜卢斯”(M. × giganteus "Floridulus"),该杂交种之前被误标记为弗洛里芒(M. floridulus)。在巨芒克隆之间观察到最高的遗传相似系数(0.94),这表明该物种内的遗传多样性非常低。而芒草基因型的多样性相对较广,相似系数为0.58。使用非加权组平均法(UPGMA)进行的聚类分析根据物种归属将这18份材料分为三个聚类,包括重新标记的巨芒“弗洛里杜卢斯”,结果证明它与巨芒密切相关。在主坐标分析(PCoA)中也出现了类似的分组情况。