Research Centre for Vegetable and Ornamental Crops, Council for Agricultural Research and Economics (CREA), 84098 Pontecagnano Faiano, Italy.
Genes (Basel). 2023 Aug 6;14(8):1594. doi: 10.3390/genes14081594.
Nuclear and cytoplasmic DNA barcoding regions are useful for plant identification, breeding, and phylogenesis. In this study, the genetic diversity of 17 species, was investigated with 5 barcode markers. The allelic variation was based on the sequences of chloroplast DNA markers including the spacer between and and gene (), the rubisco (), the maturase K (), as well as the internal transcribed spacer (ITS) region of the nuclear ribosomal DNA. A highly polymorphic marker (HRM500) derived from a comparison of cytoplasmic genome sequences in Brassicaceae, was also included. Subsequently, a real-time PCR method coupled with HRM analysis was implemented to better resolve taxonomic relationships and identify assays suitable for species identification. Integration of the five barcode regions revealed a grouping of the species according to the common chromosomal set number. Clusters including species with n = 11 ( or , , and ), n = 8 (, and ), and n = 9 (, , , and ) chromosomes were identified. Both phylogenetic analysis and the genetic structure of the collection identified as the most distant species. Previous studies emphasized this species' extremely high glucosinolate content, particularly for glucobrassicin. High-resolution melting analysis showed specific curve patterns useful for the discrimination of the species, thus determining ITS1 as the best barcode for fingerprinting. Findings demonstrate that the approach used in this study is effective for taxa investigations and genetic diversity studies.
核和细胞质 DNA 条形码区域对于植物鉴定、育种和系统发育研究非常有用。在本研究中,使用 5 个条形码标记物研究了 17 个物种的遗传多样性。等位基因变异基于叶绿体 DNA 标记物序列,包括 和 基因间隔区()、核酮糖 1,5-二磷酸羧化酶()、成熟酶 K()以及核核糖体 DNA 的内部转录间隔区(ITS)。还包括了一个从拟南芥科细胞质基因组序列比较中衍生出来的高度多态性标记物(HRM500)。随后,实施了一种实时 PCR 方法与 HRM 分析相结合,以更好地解决分类关系并鉴定适合物种鉴定的检测方法。将五个条形码区域整合在一起,根据常见的染色体组数对物种进行分组。确定了包含 n = 11(或 、 、 和 )、n = 8(、和 )和 n = 9(、 、 和 )染色体的物种聚类。系统发育分析和种群遗传结构都将 鉴定为最遥远的物种。先前的研究强调了该物种极高的硫代葡萄糖苷含量,特别是葡萄糖苷。高分辨率熔解分析显示了用于物种区分的特定曲线模式,从而确定 ITS1 作为指纹识别的最佳条形码。研究结果表明,本研究中使用的方法对于分类群调查和遗传多样性研究是有效的。