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Molecular authentication and differentiation of Dendrobium species by rDNA ITS region sequence analysis

机译:rDNA ITS区域序列分析石end 种类的分子鉴定和鉴别

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摘要

Owing to their significant medicinal and edible values, the natural Dendrobium species have underdone over-collection and habitat destruction, and cultivated species emerged for candidates. However, these Dendrobium plants are similar in shape to be easily confused, leading to extreme difficulties for identification based on their morphological and chemical features. In this study, the rDNA ITS region sequence analysis was developed for rapid and accurate identification of thirteen wild and cultivated Dendrobium species belonging to two sections Formosae and Chrysotoxae . By cloning and sequencing the rDNA ITS region genes from 13 Dendrobium species, the phylogenetic relationships among them were analyzed. Results showed that the variation of the ITS region, together with the lengths and Guanine and Cytosine contents of ITS, 5.8s rDNA, ITS1 and ITS2 sequences occurred in the tested Dendrobium species, and which from section Chrysotoxae was higher than that from section Formsae . Phylogenetic analysis based on neighbor-joining and maximum p-arsimony trees indicated that the Dendrobium species of sections Formosae and Chrysotoxae could be well divided into two groups. A majority of Dendrobium species exhibited distinctive ITS2 secondary structures, while for those with close genetic relationships were similar. Therefore, the ITS2 region sequence analysis is simple, quick, and highly reliable that can be used as an effective tool for molecular identification and classification, as well as the reconstruction of the phylogeny of wild and cultivated Dendrobium species belonging to different sections.
机译:由于其具有很高的药用价值和食用价值,石D的天然树种已经过分采集和破坏了栖息地,并出现了可供选择的栽培种。但是,这些石D植物的形状相似,很容易混淆,导致根据其形态和化学特征进行鉴定非常困难。在这项研究中,开发了rDNA ITS区域序列分析,可快速,准确地识别属于福尔摩沙和金蝶科两个部分的十三种野生和栽培石D。通过克隆和测序来自13个石D属物种的rDNA ITS区域基因,分析了它们之间的系统发育关系。结果表明,在被检石species种中,ITS区的变异以及ITS的长度,鸟嘌呤和胞嘧啶含量,5.8s rDNA,ITS1和ITS2序列均发生变化,金枪鱼断面的形态高于形态科。基于近邻结合和最大p-亚热带树木的系统发育分析表明,福尔摩沙和金蝶科的石rob属可以很好地分为两组。铁皮石end种大多数表现出独特的ITS2二级结构,而具有密切遗传关系的石end种相似。因此,ITS2区域序列分析简单,快速且高度可靠,可以用作分子鉴定和分类以及重建属于不同部分的野生和栽培石end种的系统发育的有效工具。

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