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Species identification of crested gibbons (Nomascus) in captivity in China using karyotyping- and PCR-based approaches

机译:基于核型分析和PCR的方法在中国圈养长臂猿(Nomascus)的物种鉴定

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摘要

Gibbons and siamangs (Hylobatidae) are well-known for their rapid chromosomal evolution, which has resulted in high speciation rate within the family. On the other hand, distinct karyotypes do not prevent speciation, allowing interbreeding between individuals in captivity, and the unwanted hybrids are ethically problematic as all gibbon species are endangered or critically endangered. Thus, accurate species identification is crucial for captive breeding, particularly in China where studbooks are unavailable. Identification based on external morphology is difficult, especially for hybrids, because species are usually similar in appearance. In this study, we employed G-banding karyotyping and fluorescence in situ hybridization (FISH) as well as a PCR-based approach to examine karyotypic characteristics and identify crested gibbons of the genus Nomascus from zoos and nature reserves in China. We characterized and identified five karyotypes from 21 individuals of Nomascus. Using karyotypes and mitochondrial and nuclear genes, we identified three purebred species and three hybrids, including one F2 hybrid between N. gabriellae and N. siki. Our results also supported that N. leucogenys and N. siki shared the same inversion on chromosome 7, which resolves arguments from previous studies. Our results demonstrated that both karyotyping and DNA-based approaches were suitable for identifying purebred species, though neither was ideal for hybrid identification. The advantages and disadvantages of both approaches are discussed. Our results further highlight the importance of animal ethics and welfare, which are critical for endangered species in captivity.
机译:吉本斯和赛曼斯(Hylobatidae)因其快速的染色体进化而闻名,这导致该家族中的高物种形成率。另一方面,独特的核型不能阻止物种形成,因此可以在人工饲养的个体之间进行杂交,并且由于所有长臂猿物种都处于濒危或极度濒危的境地,因此不需要的杂种在伦理上是有问题的。因此,准确的物种识别对于圈养繁殖至关重要,尤其是在中国没有螺ud的地方。基于外部形态的识别非常困难,尤其是对于杂种而言,因为物种的外观通常相似。在这项研究中,我们采用G带核型分析和荧光原位杂交(FISH),以及基于PCR的方法来检查核型特征,并从中国的动物园和自然保护区确定Nomascus属的长臂长臂猿。我们从21个Nomascus个体中鉴定并鉴定了5个核型。利用核型,线粒体和核基因,我们鉴定了三个纯种和三个杂种,其中包括一种加百里猪笼草和N. siki的F2杂种。我们的研究结果还支持白细胞猪笼草和N. siki猪笼草在7号染色体上具有相同的倒位,从而解决了先前研究的观点。我们的结果表明,核型分析和基于DNA的方法都适合鉴定纯种,尽管都不适合用于杂交鉴定。讨论了两种方法的优缺点。我们的结果进一步强调了动物伦理和福利的重要性,这对于圈养中濒临灭绝的物种至关重要。

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