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Non-invasive genotyping with a massively parallel sequencing panel for the detection of SNPs in HPA-axis genes

机译:使用大规模并行测序专家组进行非侵入式基因分型,可检测HPA轴基因中的SNP

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We designed a genotyping panel for the investigation of the genetic underpinnings of inter-individual differences in aggression and the physiological stress response. The panel builds on single nucleotide polymorphisms (SNPs) in genes involved in the three subsystems of the hypothalamic-pituitary-adrenal (HPA)-axis: the catecholamine, serotonin and corticoid metabolism. To promote the pipeline for use with wild animal populations, we used non-invasively collected faecal samples from a wild population of Assamese macaques (Macaca assamensis). We targeted loci of 46 previously reported SNPs in 21 candidate genes coding for elements of the HPA-axis and?amplified and sequenced them using next-generation Illumina sequencing technology. We compared multiple bioinformatics pipelines for variant calling and variant effect prediction. Based on this strategy and the application of different quality thresholds, we identified up to 159 SNPs with different types of predicted functional effects among our natural study population. This study provides a massively parallel sequencing panel that will facilitate integrating large-scale SNP data into behavioural and physiological studies. Such a multi-faceted approach will promote understanding of flexibility and constraints of animal behaviour and hormone physiology.
机译:我们设计了一个基因分型小组,以研究侵略性和生理应激反应之间个体差异的遗传基础。该小组建立在涉及下丘脑-垂体-肾上腺(HPA)轴的三个子系统的基因的单核苷酸多态性(SNP)上:儿茶酚胺,5-羟色胺和皮质类固醇代谢。为了促进与野生动物种群一起使用的管道,我们使用了非侵入式收集的野生阿萨姆猕猴(Macaca assamensis)粪便样本。我们将先前报道的46个SNP的基因座定位在编码HPA轴元件的21个候选基因中,并使用下一代Illumina测序技术对其进行了扩增和测序。我们比较了多种生物信息学管道,以进行变异调用和变异效果预测。基于此策略和不同质量阈值的应用,我们在自然研究人群中鉴定出多达159个具有不同类型预测功能作用的SNP。这项研究提供了一个大规模并行测序小组,将有助于将大规模SNP数据整合到行为和生理研究中。这种多方面的方法将促进对动物行为和激素生理学的灵活性和局限性的理解。

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