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Molecular Identification of Dendrobium Species (Orchidaceae) Based on the DNA Barcode ITS2 Region and Its Application for Phylogenetic Study

机译:基于DNA条形码ITS2区的石D种(兰科)分子鉴定及其在系统发生研究中的应用

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摘要

The over-collection and habitat destruction of natural Dendrobium populations for their commercial medicinal value has led to these plants being under severe threat of extinction. In addition, many Dendrobium plants are similarly shaped and easily confused during the absence of flowering stages. In the present study, we examined the application of the ITS2 region in barcoding and phylogenetic analyses of Dendrobium species (Orchidaceae). For barcoding, ITS2 regions of 43 samples in Dendrobium were amplified. In combination with sequences from GenBank, the sequences were aligned using Clustal W and genetic distances were computed using MEGA V5.1. The success rate of PCR amplification and sequencing was 100%. There was a significant divergence between the inter- and intra-specific genetic distances of ITS2 regions, while the presence of a barcoding gap was obvious. Based on the BLAST1, nearest distance and TaxonGAP methods, our results showed that the ITS2 regions could successfully identify the species of most Dendrobium samples examined; Second, we used ITS2 as a DNA marker to infer phylogenetic relationships of 64 Dendrobium species. The results showed that cluster analysis using the ITS2 region mainly supported the relationship between the species of Dendrobium established by traditional morphological methods and many previous molecular analyses. To sum up, the ITS2 region can not only be used as an efficient barcode to identify Dendrobium species, but also has the potential to contribute to the phylogenetic analysis of the genus Dendrobium.
机译:石D天然种群的过度采集和生境破坏对其商业药用价值,导致这些植物面临严重的灭绝威胁。此外,许多石D植物的形状相似,在没有开花期时很容易混淆。在本研究中,我们研究了ITS2区域在石end种(兰科)的条形码和系统发育分析中的应用。对于条形码,扩增了石end中43个样品的ITS2区域。结合GenBank的序列,使用Clustal W对序列进行比对,并使用MEGA V5.1计算遗传距离。 PCR扩增和测序的成功率为100%。 ITS2的种间和种内遗传距离之间存在显着差异,而条形码间隙的存在是明显的。基于BLAST1,最近距离和TaxonGAP方法,我们的结果表明,ITS2区域可以成功识别所检查的大多数石end样品。其次,我们使用ITS2作为DNA标记来推断64个石D种的系统发育关系。结果表明,利用ITS2区域进行聚类分析主要支持了用传统形态学方法建立的铁皮石species物种与许多先前的分子分析之间的关系。综上所述,ITS2区域不仅可以用作识别铁皮石species种类的有效条形码,而且具有促进铁皮石gen属系统发育分析的潜力。

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