首页> 外文期刊>BMC Genomics >Genome-wide survey and analysis of microsatellites in giant panda ( Ailuropoda melanoleuca ), with a focus on the applications of a novel microsatellite marker system
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Genome-wide survey and analysis of microsatellites in giant panda ( Ailuropoda melanoleuca ), with a focus on the applications of a novel microsatellite marker system

机译:大熊猫全基因组微卫星的全基因组调查和分析,重点是新型微卫星标记系统的应用

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The giant panda (Ailuropoda melanoleuca) is a critically endangered species endemic to China. Microsatellites have been preferred as the most popular molecular markers and proven effective in estimating population size, paternity test, genetic diversity for the critically endangered species. The availability of the giant panda complete genome sequences provided the opportunity to carry out genome-wide scans for all types of microsatellites markers, which now opens the way for the analysis and development of microsatellites in giant panda. By screening the whole genome sequence of giant panda in silico mining, we identified microsatellites in the genome of giant panda and analyzed their frequency and distribution in different genomic regions. Based on our search criteria, a repertoire of 855,058 SSRs was detected, with mono-nucleotides being the most abundant. SSRs were found in all genomic regions and were more abundant in non-coding regions than coding regions. A total of 160 primer pairs were designed to screen for polymorphic microsatellites using the selected tetranucleotide microsatellite sequences. The 51 novel polymorphic tetranucleotide microsatellite loci were discovered based on genotyping blood DNA from 22 captive giant pandas in this study. Finally, a total of 15 markers, which showed good polymorphism, stability, and repetition in faecal samples, were used to establish the novel microsatellite marker system for giant panda. Meanwhile, a genotyping database for Chengdu captive giant pandas (n?=?57) were set up using this standardized system. What’s more, a universal individual identification method was established and the genetic diversity were analysed in this study as the applications of this marker system. The microsatellite abundance and diversity were characterized in giant panda genomes. A total of 154,677 tetranucleotide microsatellites were identified and 15 of them were discovered as the polymorphic and stable loci. The individual identification method and the genetic diversity analysis method in this study provided adequate material for the future study of giant panda.
机译:大熊猫(Ailuropoda melanoleuca)是中国特有的极度濒危物种。微卫星已被首选为最流行的分子标记,并被证明可有效估计极度濒危物种的种群规模,亲子鉴定和遗传多样性。大熊猫完整基因组序列的可用性提供了对所有类型的微卫星标记进行全基因组扫描的机会,这现在为大熊猫中微卫星的分析和开发开辟了道路。通过筛选大熊猫的整个基因组序列,我们确定了大熊猫基因组中的微卫星,并分析了它们在不同基因组区域的频率和分布。根据我们的搜索标准,检测到855,058个SSR的库,其中最丰富的是单核苷酸。在所有基因组区域都发现了SSR,并且在非编码区域比编码区域含量更高。设计了总共160对引物,以使用选定的四核苷酸微卫星序列筛选多态性微卫星。在这项研究中,通过对22只圈养大熊猫的血液DNA进行基因分型,发现了51个新颖的多态四核苷酸微卫星基因座。最后,使用总共15个在大便样本中表现出良好的多态性,稳定性和重复性的标记物,为大熊猫建立了新颖的微卫星标记物系统。同时,使用该标准化系统建立了成都圈养大熊猫(n == 57)的基因分型数据库。此外,建立了一种通用的个体识别方法,并在本研究中分析了遗传多样性作为该标记系统的应用。在大熊猫基因组中表征了微卫星的丰度和多样性。总共鉴定了154,677个四核苷酸微卫星,其中15个被发现是多态且稳定的基因座。本研究中的个体识别方法和遗传多样性分析方法为以后的大熊猫研究提供了足够的材料。

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