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在印度野生动物法医鉴定中,利用形态测量和基于DNA的分析率先识别假虎爪。

Pioneer identification of fake tiger claws using morphometric and DNA-based analysis in wildlife forensics in India.

作者信息

Sharma Vinita, Sharma Chandra Prakash, Kumar Ved Prakash, Goyal Surendra Prakash

机构信息

Wildlife Forensic and Conservation Genetics Cell, Wildlife Institute of India, Dehradun 248001, Uttarakhand, India.

Wildlife Forensic and Conservation Genetics Cell, Wildlife Institute of India, Dehradun 248001, Uttarakhand, India.

出版信息

Forensic Sci Int. 2016 Sep;266:226-233. doi: 10.1016/j.forsciint.2016.05.024. Epub 2016 Jun 1.

Abstract

The illegal trade in wildlife is a serious threat to the existence of wild animals throughout the world. The short supply and high demand for wildlife articles have caused an influx of many different forms of fake wildlife articles into this trade. The task of identifying the materials used in making such articles poses challenges in wildlife forensics as different approaches are required for species identification. Claws constitute 3.8% of the illegal animal parts (n=2899) received at the Wildlife Institute of India (WII) for species identification. We describe the identification of seized suspected tiger claws (n=18) using a combined approach of morphometric and DNA-based analysis. The differential keratin density, determined using X-ray radiographs, indicated that none of the 18 claws were of any large cat but were fake. We determined three claw measurements, viz. ac (from the external coronary dermo-epidermal interface to the epidermis of the skin fold connecting the palmar flanges of the coronary horn), bc (from the claw tip to the epidermis of the skin fold connecting the palmar flanges of the coronary horn) and the ratio bc/ac, for all the seized (n=18), tiger (n=23) and leopard (n=49) claws. Univariate and multivariate statistical analyses were performed using SPSS. A scatter plot generated using canonical discriminant function analysis revealed that of the 18 seized claws, 14 claws formed a cluster separate from the clusters of the tiger and leopard claws, whereas the remaining four claws were within the leopard cluster. Because a discrepancy was observed between the X-ray images and the measurements of these four claws, one of the claw that clustered with the leopard claws was chosen randomly and DNA analysis carried out using the cyt b (137bp) and 16S rRNA (410bp) genes. A BLAST search and comparison with the reference database at WII indicated that the keratin material of the claw was derived from Bos taurus (cattle). This is a pioneering discovery, and we suggest that a hierarchical combination of techniques be used for identifying claws involved in wildlife offences, i.e. that an X-ray, morphometric and DNA-based analysis be carried out, to ascertain whether the claws are of tigers or leopards. To identify species in the illegal wildlife trade morphometric and genetic reference database should be developed. Morphological features as well as DNA profiles need to be used for better implementation of the Wildlife (Protection) Act, 1972 of India and other laws/treaties in South-east Asia.

摘要

野生动物非法贸易对全球野生动物的生存构成了严重威胁。野生动物制品的供不应求导致大量不同形式的假冒野生动物制品涌入这一贸易领域。由于物种鉴定需要不同的方法,因此识别此类制品所使用的材料给野生动物法医鉴定带来了挑战。在印度野生动物研究所(WII)接收的用于物种鉴定的非法动物制品(n = 2899)中,爪子占3.8%。我们描述了使用形态测量和基于DNA的分析相结合的方法对查获的疑似老虎爪子(n = 18)进行鉴定的过程。通过X射线照片测定的角蛋白密度差异表明,这18只爪子中没有一只属于大型猫科动物,而是假冒的。我们测定了所有查获的(n = 18)、老虎的(n = 23)和豹的(n = 49)爪子的三个尺寸,即ac(从外部冠状真皮-表皮界面到连接冠状角掌侧凸缘的皮肤褶皱的表皮)、bc(从爪尖到连接冠状角掌侧凸缘的皮肤褶皱的表皮)以及bc/ac比值。使用SPSS进行了单变量和多变量统计分析。通过典型判别函数分析生成的散点图显示,在18只查获的爪子中,有14只爪子形成了一个与老虎和豹爪子的聚类分开的聚类,而其余四只爪子在豹的聚类内。由于在这四只爪子的X射线图像和测量结果之间观察到差异,随机选择了一只与豹爪子聚类在一起的爪子,并使用细胞色素b(137bp)和16S rRNA(410bp)基因进行了DNA分析。BLAST搜索以及与WII的参考数据库进行比较表明,爪子的角蛋白材料来自牛(Bos taurus)。这是一项开创性的发现,我们建议使用分层组合技术来识别涉及野生动物犯罪的爪子,即进行X射线、形态测量和基于DNA的分析,以确定爪子是否来自老虎或豹。为了识别非法野生动物贸易中的物种,应该建立形态测量和遗传参考数据库。需要利用形态特征以及DNA图谱来更好地实施印度1972年的《野生动物(保护)法》以及东南亚的其他法律/条约。

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