首页> 外文OA文献 >Deep mRNA Sequencing of the Tritonia diomedea Brain Transcriptome Provides Access to Gene Homologues for Neuronal Excitability, Synaptic Transmission and Peptidergic Signalling
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Deep mRNA Sequencing of the Tritonia diomedea Brain Transcriptome Provides Access to Gene Homologues for Neuronal Excitability, Synaptic Transmission and Peptidergic Signalling

机译:Tritonia diomedea脑转录组的深mRNA测序为神经元兴奋性,突触传递和肽能信号传递提供了基因同源物的途径。

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摘要

The sea slug Tritonia diomedea (Mollusca, Gastropoda, Nudibranchia), has a simple and highly accessible nervous system, making it useful for studying neuronal and synaptic mechanisms underlying behavior. Although many important contributions have been made using Tritonia, until now, a lack of genetic information has impeded exploration at themolecular level. We performed Illumina sequencing of central nervous system mRNAs from Tritonia, generating 133.1 million 100 base pair, paired-end reads. De novo reconstruction of the RNA-Seq data yielded a total of 185,546 contigs, which partitioned into 123,154 non-redundant gene clusters (unigenes). BLAST comparison with RefSeq and Swiss-Prot protein databases, as well as mRNA data from other invertebrates (gastropod molluscs: Aplysia californica, Lymnaea stagnalis and Biomphalaria glabrata; cnidarian: Nematostella vectensis) revealed that up to 76,292 unigenes in the Tritonia transcriptome have putative homologues in other databases, 18,246 of which are below a more stringent E-value cut-off of 1x10-6. In silico prediction of secreted proteins from the Tritonia transcriptome shotgun assembly (TSA) produced a database of 579 unique sequences of secreted proteins, which also exhibited markedly higher expression levels compared to other genes in the TSA.Our efforts greatly expand the availability of gene sequences available for Tritonia diomedea. We were able to extract full length protein sequences for most queried genes, including those involved in electrical excitability, synaptic vesicle release and neurotransmission, thus confirming that the transcriptome will serve as a useful tool for probing the molecular correlates of behavior in this species. We also generated a neurosecretome database that will serve as a useful tool for probing peptidergic signalling systems in the Tritonia brain.
机译:海参Tritonia diomedea(软体动物,腹足纲,Nudibranchia)具有简单且高度可访问的神经系统,使其对于研究行为基础的神经元和突触机制非常有用。尽管使用Tritonia已经做出了许多重要的贡献,但是直到现在,缺乏遗传信息已经阻碍了在分子水平上的探索。我们对Tritonia的中枢神经系统mRNA进行了Illumina测序,生成了1.331亿个100个碱基对的配对末端读段。从头开始重建RNA-Seq数据产生了总共185,546个重叠群,它们被划分为123,154个非冗余基因簇(单基因)。与RefSeq和Swiss-Prot蛋白质数据库进行的BLAST比较,以及其他无脊椎动物(腹足动物的软体动物:加州鸭嘴兽,斜纹夜蛾和光滑小球藻;刺胞:线虫线虫)的mRNA数据显示,Tritonia转录物中多达76292个同源基因在其他数据库中,其中18,246个的E值临界值低于1x10-6。通过计算机对Tritonia转录组shot弹枪装配(TSA)分泌蛋白的预测,产生了579个分泌蛋白独特序列的数据库,与TSA中的其他基因相比,其表达水平也显着提高。适用于Tritonia diomedea。我们能够提取出大多数所查询基因的全长蛋白质序列,包括那些与电兴奋性,突触小泡释放和神经传递有关的基因,从而证实了转录组将成为探讨该物种行为的分子相关性的有用工具。我们还生成了一个神经分泌素数据库,该数据库将用作探测Tritonia脑中肽能信号系统的有用工具。

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