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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Generation and characterization of the sea bass Dicentrarchus labrax brain and liver transcriptomes
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Generation and characterization of the sea bass Dicentrarchus labrax brain and liver transcriptomes

机译:海贝斯Dicentrarchus Labrax脑和肝脏转录om的一代和表征

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摘要

The sea bass Dicentrarchus labrax is the center of interest of an increasing number of basic or applied research investigations, even though few genomic or transcriptomic data is available. Current public data only represent a very partial view of its transcriptome. To fill this need, we characterized brain and liver transcriptomes in a generalist manner that would benefit the entire scientific community. We also tackled some bioinformatics questions, related to the effect of RNA fragment size on the assembly quality.Using Illumina RNA-seq, we sequenced organ pools from both wild and farmed Atlantic and Mediterranean fishes. We built two distinct cDNA libraries per organ that only differed by the length of the selected mRNA fragments. Efficiency of assemblies performed on either or both fragments size differed depending on the organ, but remained very close reflecting the quality of the technical replication. We generated more than 19,538Mbp of data. Over 193million reads were assembled into 35,073 contigs (average length=2374bp; N50=3257). 59% contigs were annotated with SwissProt, which corresponded to 12,517 unique genes. We compared the Gene Ontology (GO) contig distribution between the sea bass and the tilapia. We also looked for brain and liver GO specific signatures as well as KEGG pathway coverage. 23,050 putative micro-satellites and 134,890 putative SNPs were identified.Our sampling strategy and assembly pipeline provided a reliable and broad reference transcriptome for the sea bass. It constitutes an indisputable quantitative and qualitative improvement of the public data, as it provides 5 times more base pairs with fewer and longer contigs. Both organs present unique signatures consistent with their specific physiological functions. The discrepancy in fragment size effect on assembly quality between organs lies in their difference in complexity and thus does not allow prescribing any general strategy. This information on two key organs will facilitate further functional approaches.
机译:Sea Bass Dicentrarchus Labrax是越来越多的基本或应用研究调查的兴趣中心,即使有很少的基因组或转录组数据都可以使用。目前的公共数据仅代表其转录组的局部视图。为了填补这种需求,我们以一般主义方式表征了大脑和肝脏转录om,这将使整个科学界有益。我们还解决了一些生物信息学问题,与RNA片段大小对组装质量的影响有关。illumina RNA-SEQ,我们从野生和养殖大西洋和地中海鱼类中排序器官池。我们每个器官内建立了两个不同的cDNA文库,只有所选择的mRNA片段的长度不同。在任一个或两个片段大小上执行的组件的效率根据器官差异,但仍然非常接近,反映了技术复制的质量。我们产生了超过19,538MBp的数据。超过193米的读数被组装成35,073个折叠(平均长度= 2374bp; n50 = 3257)。 59%的Centigs用Swissprot注释,其对应于12,517个独特的基因。我们比较了海贝斯和罗非鱼之间的基因本体(GO)Contig分布。我们也寻找大脑和肝脏去特定的签名以及Kegg路径覆盖范围。鉴定了23,050个推定的微卫星和134,890个推定的SNP.our采样策略和装配管道为海贝斯提供了可靠和广泛的参考转录组。它构成了对公共数据的无可争议的定量和定性改进,因为它提供了5倍的碱基对,越来越多的Contigs。两个器官都呈现出与其特定生理功能一致的独特签名。片段大小对器官之间的差异影响的差异在于它们的复杂性的差异,因此不允许处方的任何一般策略。有关两个关键器官的信息将促进进一步的功能方法。

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