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Copy number variation study in Japanese quail associated with stress related traits using whole genome re-sequencing data

机译:用全基因组重新排序数据复制与应力相关性状相关性的日语鹌鹑的编号变体研究

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摘要

Copy number variation (CNV) is a major driving factor for genetic variation and phenotypic diversity in animals. To detect CNVs and understand genetic components underlying stress related traits, we performed whole genome re-sequencing of pooled DNA samples of 20 birds each from High Stress (HS) and Low Stress (LS) Japanese quail lines using Illumina HiSeq 2×150 bp paired end method. Sequencing data were aligned to the quail genome and CNVnator was used to detect CNVs in the aligned data sets. The depth of coverage for the data reached to 41.4x and 42.6x for HS and LS birds, respectively. We identified 262 and 168 CNV regions affecting 1.6 and 1.9% of the reference genome that completely overlapped 454 and 493 unique genes in HS and LS birds, respectively. Ingenuity pathway analysis showed that the CNV genes were significantly enriched to phospholipase C signaling, neuregulin signaling, reelin signaling in neurons, endocrine and nervous development, humoral immune response, and carbohydrate and amino acid metabolisms in HS birds, whereas CNV genes in LS birds were enriched in cell-mediated immune response, and protein and lipid metabolisms. These findings suggest CNV genes identified in HS and LS birds could be candidate markers responsible for stress responses in birds.
机译:拷贝数变型(CNV)是动物遗传变异和动物表型多样性的主要驱动因素。检测CNV和理解遗传成分的遗传分量相关性状相关性状,我们对来自高应力(HS)和低应力(LS)日本鹌鹑线的汇集DNA样本的整个基因组重新排序,使用Illumina Hiseq 2×150bp配对结束方法。测序数据与鹌鹑基因组对齐,并且CNVNator用于检测对准数据集中的CNV。分别为HS和LS鸟类达到41.4倍和42.6倍的数据的覆盖深度。我们确定了262和168个CNV区域,影响了1.6和1.9%的参考基因组,分别在HS和LS鸟类中完全重叠的454和493个独特的基因。 Ingenueny途径分析表明,CNV基因显着富集为磷脂酶C信号,Neuregulin信号,Reelin信号传导在神经元,内分泌和神经发育,体液免疫应答和HS鸟类中的碳水化合物和氨基酸代谢,而LS鸟类中的CNV基因是富含细胞介导的免疫应答,以及蛋白质和脂质代谢。这些发现表明HS和LS鸟类中鉴定的CNV基因可以是负责鸟类中应激反应的候选标记。

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