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Phylogenetic relationships and DNA barcoding of nine endangered medicinal plant species endemic to Saint Katherine protectorate

机译:九种濒危药用植物物种对圣凯瑟琳保护区的系统发育关系和DNA条形码

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摘要

A high degree of endemism has been recorded for several plant groups collectively in Saint Katherine Protectorate (SKP) in the Sinai Peninsula. Nine endangered endemic plant species in SKP were selected to test the variable abilities of three different DNA barcodes; Riboluse-1,5- Biphosphate Carboxylase/Oxygenase Large subunit (rbcL), Internal Transcribed Spacer (ITS), and the two regions of the plastid gene (ycf1) as well as Start Codon Targeted (SCoT) Polymorphism to find the phylogenetic relationships among them. The three barcodes were generally more capable of finding the genetic relationships among the plant species under study, new barcodes were introduced to the National Centre for Biotechnology Information (NCBI) for the first time through our work. The barcode sequences were efficient in finding the genetic relationships between the nine species. However, SCoT polymorphism could only cluster plant species belonging to the same genus together in one group, but it could not cluster plant species belonging to the same families except for some primers solely. RbcL was the most easily amplified and identified barcode in eight out of the nine species at the species level and the ninth barcode to the genus level. ITS identified all the species to the genus level. Finally, ycf1 identified six out of the eight species, but it could not identify two of the eight species to the genus level.
机译:在西奈半岛的圣凯瑟琳保护丁酸(SKP)中,几种植物团体已经记录了高度的植入物。选择SKP中的九种濒危物种,以测试三种不同DNA条形码的可变能力;核糖杆-1,5-二磷酸羧基酶/氧酶大亚基(RBCL),内部转录的间隔物(其),以及塑性基因(YCF1)的两个区域以及起始密码子靶向(SCOT)多态性,以找到系统发育关系他们。三个条形码通常更能在研究中找到植物物种之间的遗传关系,通过我们的工作首次将新的条形码引入国家生物技术信息(NCBI)中心。条形码序列有效地在九种物种之间找到遗传关系。然而,苏格兰多态性只能在一个组中组合属于同一属的植物物种,但它不能仅属于同一家族的植物物种,除了一些引物。 RBCL是物种水平的九种中最容易放大和鉴定的条形码,并且在九种物种中和第九条条形码到属级别。它将所有物种鉴定到属的所有物种。最后,YCF1确定了八种物种中的六个,但不能识别八种物种中的两个物种。

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