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DNA barcoding as a tool for robust identification of cervids of India and its utility in wildlife forensics

机译:DNA条形码作为野生动物取证中印度Cervids稳定识别的工具及其效用

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摘要

DNA barcoding has become a popular method of choice for identification of specimen based on molecular techniques. Here, we present preliminary findings on generating robust DNA barcode library of Cervids of India. The dataset comprising the DNA barcode library of seven deer species included in the genus Cervus, Axis and Muntiacus classified under family Cervidae. Mitochondrial Cytochrome C Oxidase subunit I gene of ca. 710 bp accepted widely as DNA barcode region, was used for generating species specific signature from 31 known samples of seven Indian deer species. Expectedly, the NJ tree clustered three genera i.e. Cervus, Axis and Muntiacus of Cervids of India into three clades. Further, the intra- and interspecies distances based on Kimura 2 parameter model also supported the results. The average intra- and interspecies sequence divergence were 0.011 (±0.09) and 0.65 (±0.14), respectively. The present study has exhibited that DNA barcoding has discriminating power to delineate boundaries among the closely related species. The data generated are of high importance to the law enforcement agencies in effective identification of species in wildlife offence cases. The similar approach can be utilized for generating DNA barcodes for other Indian mammals for making effective management and conservation action decisions.
机译:DNA条形码已成为基于分子技术的鉴定标本的首选方法。在这里,我们提出了关于产生印度Cervids的强大DNA条形码库的初步发现。该数据集包含包括在宫颈属,轴和MUNTIACU中包括的七种鹿种类的DNA条形码文库。大肠杆菌的线粒体细胞色素C氧化酶亚基I基因。 710bp广泛接受为DNA条形码区域,用于从31种印度鹿物种的31种已知样品产生物种特异性签名。预计,NJ树聚集了三个属,印度Cervids的颈椎,轴和蒙扎,分为三个枝条。此外,基于Kimura 2参数模型的基于Kimura 2参数模型的内部距离也支持了结果。平均和间隔序列分歧分别为0.011(±0.09)和0.65(±0.14)。本研究表明,DNA条形码具有区分密切相关物种中的界限的能力。生成的数据对执法机构具有很高的重要性,以有效识别野生动物犯罪案件的物种。类似的方法可用于生成用于其他印度哺乳动物的DNA条形码,以便进行有效的管理和保护作用决策。

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