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通过下一代测序揭示的同域矮白鲑和正常白鲑(白鲑科,鲑科)分化的转录组学。

The transcriptomics of sympatric dwarf and normal lake whitefish (Coregonus clupeaformis spp., Salmonidae) divergence as revealed by next-generation sequencing.

机构信息

Institut de Biologie Intégrative et des Systèmes (IBIS), Québec-Océan, Université Laval, Québec, QC, Canada.

出版信息

Mol Ecol. 2010 Dec;19(24):5389-403. doi: 10.1111/j.1365-294X.2010.04934.x. Epub 2010 Nov 19.

Abstract

Gene expression divergence is one of the mechanisms thought to be involved in the emergence of incipient species. Next-generation sequencing has become an extremely valuable tool for the study of this process by allowing whole transcriptome sequencing, or RNA-Seq. We have conducted a 454 GS-FLX pyrosequencing experiment to refine our understanding of adaptive divergence between dwarf and normal lake whitefish species (Coregonus clupeaformis spp.). The objectives were to: (i) investigate transcriptomic divergence as measured by liver RNA-Seq; (ii) test the correlation between divergence in expression and sequence polymorphism; and (iii) investigate the extent of allelic imbalance. We also compared the results of RNA-seq with those of a previous microarray study performed on the same fish. Following de novo assembly, results showed that normal whitefish overexpressed more contigs associated with protein synthesis while dwarf fish overexpressed more contigs related to energy metabolism, immunity and DNA replication and repair. Moreover, 63 SNPs showed significant allelic imbalance, and this phenomenon prevailed in the recently diverged dwarf whitefish. Results also showed an absence of correlation between gene expression divergence as measured by RNA-Seq and either polymorphism rate or sequence divergence between normal and dwarf whitefish. This study reiterates an important role for gene expression divergence, and provides evidence for allele-specific expression divergence as well as evolutionary decoupling of regulatory and coding sequences in the adaptive divergence of normal and dwarf whitefish. It also demonstrates how next-generation sequencing can lead to a more comprehensive understanding of transcriptomic divergence in a young species pair.

摘要

基因表达的差异是物种形成的机制之一。下一代测序技术通过全转录组测序或 RNA-Seq 成为研究这一过程的极其有价值的工具。我们进行了 454 GS-FLX 焦磷酸测序实验,以深化我们对矮白鱼和正常白鱼物种(白鲑属)之间适应性差异的理解。目的是:(i)通过肝 RNA-Seq 研究转录组差异;(ii)检验表达差异与序列多态性之间的相关性;(iii)研究等位基因失衡的程度。我们还将 RNA-seq 的结果与在相同鱼类上进行的先前微阵列研究的结果进行了比较。在从头组装之后,结果表明正常白鱼过度表达了更多与蛋白质合成相关的基因,而矮白鱼则过度表达了更多与能量代谢、免疫和 DNA 复制和修复相关的基因。此外,有 63 个 SNP 显示出明显的等位基因失衡,这种现象在最近分化的矮白鱼中更为普遍。结果还表明,RNA-Seq 测量的基因表达差异与正常和矮白鱼之间的多态性率或序列差异之间没有相关性。这项研究再次强调了基因表达差异的重要作用,并为正常和矮白鱼的适应性差异中基因表达的等位基因特异性差异以及调节序列和编码序列的进化解耦提供了证据。它还展示了下一代测序如何导致对年轻物种对转录组差异的更全面理解。

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