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大西洋鳕鱼的大规模序列分析。

Large-scale sequence analyses of Atlantic cod.

作者信息

Johansen Steinar D, Coucheron Dag H, Andreassen Morten, Karlsen Bård Ove, Furmanek Tomasz, Jørgensen Tor Erik, Emblem Ase, Breines Ragna, Nordeide Jarle T, Moum Truls, Nederbragt Alexander J, Stenseth Nils C, Jakobsen Kjetill S

机构信息

Department of Molecular Biotechnology, Institute of Medical Biology, University of Tromsø, Norway. Steinar.

出版信息

N Biotechnol. 2009 Jun;25(5):263-71. doi: 10.1016/j.nbt.2009.03.014. Epub 2009 Apr 5.

Abstract

The Atlantic cod (Gadus morhua) is a key species in the North Atlantic ecosystem and commercial fisheries, with increasing aquacultural production in several countries. A Norwegian effort to sequence the complete 0.9Gbp genome by the 454 pyrosequencing technology has been initiated and is in progress. Here we review recent progress in large-scale sequence analyses of the nuclear genome, the mitochondrial genome and genome-wide microRNA identification in the Atlantic cod. The nuclear genome will be de novo sequenced with 25 times oversampling. A total of 120 mitochondrial genomes, sampled from several locations in the North Atlantic, are being completely sequenced by Sanger technology in a high-throughput pipeline. These sequences will be included in a new database for maternal marker reference of Atlantic cod diversity. High-throughput 454 sequencing, as well as Evolutionary Image Array (EvoArray) informatics, is used to investigate the complete set of expressed microRNAs and corresponding mRNA targets in various developmental stages and tissues. Information about microRNA profiles will be essential in the understanding of transcriptome complexity and regulation. Finally, developments and perspectives of Atlantic cod aquaculture are discussed in the light of next-generation high-throughput sequence technologies.

摘要

大西洋鳕鱼(Gadus morhua)是北大西洋生态系统和商业渔业中的关键物种,在多个国家其水产养殖产量不断增加。挪威已启动一项利用454焦磷酸测序技术对完整的0.9Gbp基因组进行测序的工作,目前正在进行中。在此,我们综述了大西洋鳕鱼核基因组、线粒体基因组的大规模序列分析以及全基因组微小RNA鉴定方面的最新进展。核基因组将进行25倍过采样的从头测序。通过桑格技术在高通量流程中对从北大西洋多个地点采集的总共120个线粒体基因组进行全测序。这些序列将被纳入一个新的数据库,用于大西洋鳕鱼多样性母系标记参考。高通量454测序以及进化图像阵列(EvoArray)信息学被用于研究不同发育阶段和组织中完整的表达微小RNA及其相应的mRNA靶标。微小RNA谱信息对于理解转录组复杂性和调控至关重要。最后,结合下一代高通量测序技术讨论了大西洋鳕鱼水产养殖的发展和前景。

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