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文昌鱼 EST 分析和转录组学研究——过去、现在和未来。

EST and transcriptome analysis of cephalochordate amphioxus--past, present and future.

机构信息

Institute of Information Science, Academia Sinica, College of Life Science, National Taiwan University, Taipei, Taiwan.

出版信息

Brief Funct Genomics. 2012 Mar;11(2):96-106. doi: 10.1093/bfgp/els002. Epub 2012 Feb 4.

Abstract

The cephalochordates, commonly known as amphioxus or lancelets, are now considered the most basal chordate group, and the studies of these organisms therefore offer important insights into various levels of evolutionary biology. In the past two decades, the investigation of amphioxus developmental biology has provided key knowledge for understanding the basic patterning mechanisms of chordates. Comparative genome studies of vertebrates and amphioxus have uncovered clear evidence supporting the hypothesis of two-round whole-genome duplication thought to have occurred early in vertebrate evolution and have shed light on the evolution of morphological novelties in the complex vertebrate body plan. Complementary to the amphioxus genome-sequencing project, a large collection of expressed sequence tags (ESTs) has been generated for amphioxus in recent years; this valuable collection represents a rich resource for gene discovery, expression profiling and molecular developmental studies in the amphioxus model. Here, we review previous EST analyses and available cDNA resources in amphioxus and discuss their value for use in evolutionary and developmental studies. We also discuss the potential advantages of applying high-throughput, next-generation sequencing (NGS) technologies to the field of amphioxus research.

摘要

文昌鱼,俗称海豆芽或被囊鱼,现被认为是最原始的脊索动物群体,因此对这些生物的研究为进化生物学的各个层面提供了重要的见解。在过去的二十年中,文昌鱼发育生物学的研究为理解脊索动物的基本模式形成机制提供了关键知识。对脊椎动物和文昌鱼的比较基因组研究提供了明确的证据,支持了在脊椎动物进化早期发生的两轮全基因组复制的假说,并阐明了复杂的脊椎动物身体结构中形态新颖性的进化。除了文昌鱼基因组测序项目之外,近年来还为文昌鱼生成了大量的表达序列标签(EST);这个宝贵的数据集为文昌鱼模型中的基因发现、表达谱和分子发育研究提供了丰富的资源。在这里,我们回顾了文昌鱼的以前的 EST 分析和现有的 cDNA 资源,并讨论了它们在进化和发育研究中的应用价值。我们还讨论了将高通量、下一代测序(NGS)技术应用于文昌鱼研究领域的潜在优势。

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