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Genome-based development of 15 microsatellite markers in fluorescent multiplexes for parentage testing in captive tigers

机译:基于基于基于基于微卫星标记的基于基于微卫星标记的荧光复用中的术语术语中的父母复用

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摘要

As one of the most endangered species, tiger (Panthera tigris) inbreeding has become an urgent issue to address. Using a microsatellite (short tandem repeat, STR) identification system, paternity testing may be helpful to avoid inbreeding in captive breeding programs. In this study, we developed a genome-based identification system named tiger pedigree identification multiplex system (TPI-plex). By analyzing the entire tiger genome, 139,967 STR loci were identified and 12.76% of these displayed three to six alleles among three re-sequenced individual tiger genomes. A total of 204 candidate STRs were identified and screened with a reference population containing 31 unrelated captive tigers. Of these, 15 loci were chosen for inclusion in the multiplex panel. The mean allele number and mean expected heterozygosity (He) were 7.3333 and 0.7789, respectively. The cumulative probability of exclusion (CPE) and total probability of discrimination power (TDP) reached 0.999999472 and 0.999999999999995, respectively. The results showed that the TPI-plex system can be applied in routine pedigree identification for captive tigers. We also added a sex identification marker named TAMEL into the TPI-plex for sex determination.
机译:作为最濒危物种之一,虎(Panthera Tigris)近亲繁殖已成为解决的紧急问题。使用微卫星(短串联重复,STR)识别系统,父权测试可能有助于避免植入育种计划中的近亲繁殖。在这项研究中,我们开发了一种名为Tiger谱系识别多路复用系统(TPI-Plex)的基于基因组的识别系统。通过分析整个Tiger基因组,鉴定了139,967个STR基因座,其中12.76%在三个重新测序的单个虎基因组中显示了三到六个等位基因。共有204个候选strs被鉴定并筛选含有31个无关的俘虏老虎的参考人群。其中,选择15个基因座以包含在多路复用面板中。平均等位基因数和平均预期杂合性(HE)分别为7.3333和0.7789。排除(CPE)的累积概率和辨别力(TDP)的总概率分别达到0.999999472和0.999999999999995。结果表明,TPI-Plex系统可以应用于封闭老虎的常规血统识别。我们还添加了一个名为Tamel的性识别标记进入TPI-Plex进行性别决定。

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