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利用 Sanger 和 454 焦磷酸测序方法对虹鳟转录组进行特征分析。

Characterization of the rainbow trout transcriptome using Sanger and 454-pyrosequencing approaches.

机构信息

Laboratory of Animal Biotechnology and Genomics, Division of Animal and Nutritional Sciences, West Virginia University, Morgantown, WV 26506, USA.

出版信息

BMC Genomics. 2010 Oct 13;11:564. doi: 10.1186/1471-2164-11-564.

Abstract

BACKGROUND

Rainbow trout are important fish for aquaculture and recreational fisheries and serves as a model species for research investigations associated with carcinogenesis, comparative immunology, toxicology and evolutionary biology. However, to date there is no genome reference sequence to facilitate the development of molecular technologies that utilize high-throughput characterizations of gene expression and genetic variation. Alternatively, transcriptome sequencing is a rapid and efficient means for gene discovery and genetic marker development. Although a large number (258,973) of EST sequences are publicly available, the nature of rainbow trout duplicated genome hinders assembly and complicates annotation.

RESULTS

High-throughput deep sequencing of the Swanson rainbow trout doubled-haploid transcriptome using 454-pyrosequencing technology yielded ~1.3 million reads with an average length of 344 bp, a total of 447 million bases. De novo assembly of the sequences yielded 151,847 Tentative Consensus (TC) sequences (average length of 662 bp) and 224,391 singletons. A combination assembly of both the 454-pyrosequencing ESTs and the pre-existing sequences resulted in 161,818 TCs (average length of 758 bp) and 261,071 singletons. Gene Ontology analysis of the combination assembly showed high similarities to transcriptomes of other fish species with known genome sequences.

CONCLUSION

The 454 library significantly increased the suite of ESTs available for rainbow trout, allowing improved assembly and annotation of the transcriptome. Furthermore, the 454 sequencing enables functional genome research in rainbow trout, providing a wealth of sequence data to serve as a reference transcriptome for future studies including identification of paralogous sequences and/or allelic variation, digital gene expression and proteomic research.

摘要

背景

虹鳟是水产养殖和娱乐渔业的重要鱼类,也是致癌、比较免疫学、毒理学和进化生物学等研究领域的模式物种。然而,迄今为止,还没有基因组参考序列来促进利用高通量基因表达和遗传变异特征的分子技术的发展。相反,转录组测序是发现基因和遗传标记的快速有效的方法。尽管有大量的 EST 序列(258973 个)可供公开使用,但虹鳟重复基因组的性质阻碍了组装并使注释复杂化。

结果

使用 454 焦磷酸测序技术对斯旺森虹鳟的双倍单倍体转录组进行高通量深度测序,得到约 130 万条平均长度为 344bp 的读长,共计 4.47 亿个碱基。对序列进行从头组装得到 151847 个暂定共识(TC)序列(平均长度为 662bp)和 224391 个单序列。将这两种 454 焦磷酸测序 EST 与预先存在的序列进行组合组装,得到 161818 个 TC(平均长度为 758bp)和 261071 个单序列。组合组装的基因本体论分析与具有已知基因组序列的其他鱼类的转录组高度相似。

结论

454 文库显著增加了虹鳟的 EST 套件,从而改进了转录组的组装和注释。此外,454 测序使虹鳟的功能基因组研究成为可能,提供了丰富的序列数据,可作为未来研究的参考转录组,包括鉴定旁系序列和/或等位基因变异、数字基因表达和蛋白质组学研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b63/3091713/a3a56c9595d8/1471-2164-11-564-1.jpg

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