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SNP Identification through Transcriptome Analysis of the European Brown Hare (Lepus europaeus): Cellular Energetics and Mother’s Curse

机译:通过转录组分析对欧洲棕兔(Lepus europaeus)进行SNP鉴定:细胞能量学和母亲的诅咒

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摘要

The European brown hare (Lepus europaeus, Pallas 1778) is an important small game species in Europe. Due to its size and position in the food chain, as well as its life history, phenotypic variation and the relatively recent speciation events, brown hare plays an important role in the structure of various ecosystems and has emerged as an important species for population management and evolutionary studies. In order to identify informative SNPs for such studies, heart and liver tissues of three samples from the European lineage and a three-sample pool from the Anatolian lineage were subjected to RNA-Sequencing analysis. This effort resulted in 9496 well-assembled protein-coding sequences with close homology to human. After applying very stringent filtering criteria, 66185 polymorphic sites were identified in 7665 genes/cds and 2050 of those polymorphic sites are potentially capable of distinguishing the European from the Anatolian lineage. From these distinguishing mutations we focused on those in genes that are involved in cellular energy production, namely the glycolysis, Krebs cycle and the OXPHOS machinery. A selected set of SNPs was also validated by Sanger sequencing. By simulating the three European individuals as one pool, no substantial informative-SNP identification was lost, making it a cost-efficient approach. To our knowledge this is the first attempt to correlate the differentiation in both nuclear and mitochondrial genome between the two different lineages of L. europaeus with the observed spatial partitioning of the lineages of the species, proposing a possible mechanism that is maintaining the reproductive isolation of the lineages.
机译:欧洲褐兔(Lepus europaeus,帕拉斯1778年)是欧洲重要的小型野味物种。由于其在食物链中的大小和位置,以及其生活史,表型变异和相对较近的物种形成事件,褐兔在各种生态系统的结构中起着重要作用,并已成为人口管理和保护的重要物种。进化研究。为了鉴定用于此类研究的信息性SNP,对欧洲血统的三个样本和安纳托利亚血统的三个样本池的心脏和肝脏组织进行了RNA序列分析。这项工作导致了9496个与人具有高度同源性的组装良好的蛋白质编码序列。在应用非常严格的过滤标准后,在7665个基因/ cds中鉴定出66185个多态性位点,其中2050个这些多态性位点有可能将欧洲人与安纳托利亚人的谱系区分开。从这些与众不同的突变中,我们将重点放在那些涉及细胞能量产生的基因中,即糖酵解,克雷布斯循环和OXPHOS机制。还通过Sanger测序验证了一组选定的SNP。通过将三个欧洲人模拟为一个集合,不会丢失实质性的SNP信息识别,从而使其成为一种经济高效的方法。据我们所知,这是首次尝试将欧洲L.europaeus的两个不同谱系之间的核和线粒体基因组的分化与所观察到的物种谱系的空间划分相关联,提出了一种可能的机制,该机制维持了欧洲of蝶的生殖分离。血统。

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