期刊文献+

Computational Identification of 99 Insect MicroRNAs Using Comparative Genomics

Computational Identification of 99 Insect MicroRNAs Using Comparative Genomics
原文传递
导出
摘要 In recent years, much effort has been made in identifying microRNA (miRNA) genes from mammals insects, worms, plants, and viruses. Continuing the search for more miRNA genes is still important but difficult. This paper presents a computational strategy based on comparative genomics analysis. The algorithm was used to scan four invertebrate genomes, Drosophila melangoster, Bombyx mori, Apis mellifera, and Anopheles gambiae, which are either model organisms or medically/economically important insects. 99 new miRNA genes were predicted from the four insect species which can be grouped into 17 miRNA gene families, of which 10 of the miRNA families are insect-specific. Sequence similarity analysis showed that 16 of the newly predicted insect miRNAs belong to the K-box, GY-box, and Brd-box miRNA families which are important participators in Notch-related pathways. To test the validity of the algorithm, 39 predicted insect miRNA genes from D. melangoster and A. mellifera were selected for further biological validation. 34 (87%) predicted miRNA genes' transcripts were successfully detected by reverse transcription-polymerase chain reaction experiments. Thus, this strategy can be used to efficiently screen for miRNA genes conserved cross species. In recent years, much effort has been made in identifying microRNA (miRNA) genes from mammals insects, worms, plants, and viruses. Continuing the search for more miRNA genes is still important but difficult. This paper presents a computational strategy based on comparative genomics analysis. The algorithm was used to scan four invertebrate genomes, Drosophila melangoster, Bombyx mori, Apis mellifera, and Anopheles gambiae, which are either model organisms or medically/economically important insects. 99 new miRNA genes were predicted from the four insect species which can be grouped into 17 miRNA gene families, of which 10 of the miRNA families are insect-specific. Sequence similarity analysis showed that 16 of the newly predicted insect miRNAs belong to the K-box, GY-box, and Brd-box miRNA families which are important participators in Notch-related pathways. To test the validity of the algorithm, 39 predicted insect miRNA genes from D. melangoster and A. mellifera were selected for further biological validation. 34 (87%) predicted miRNA genes' transcripts were successfully detected by reverse transcription-polymerase chain reaction experiments. Thus, this strategy can be used to efficiently screen for miRNA genes conserved cross species.
出处 《Tsinghua Science and Technology》 SCIE EI CAS 2008年第4期425-432,共8页 清华大学学报(自然科学版(英文版)
基金 the National Key Basic Research and Develop-ment (973) Program of China (No. 2004CB518605) the National Natural Science Foundation of China (Nos. 60405001 and 60572086)
关键词 microRNA (miRNA) INSECT comparative genomics reverse transcription-polymerase chain reaction microRNA (miRNA) insect comparative genomics reverse transcription-polymerase chain reaction
  • 相关文献

参考文献10

  • 1Seitz H,Royo H,Bortolin M L, et al.A large imprintedmicroRNA gene cluster at the mouse Dlk1-Gtl2 domain[].Genome Research.2004
  • 2Maher C,Timmermans M,Stein L, et al.Identifying microRNAs in plant genomes[].Proc IEEE CSB.2004
  • 3Griffiths-Jones S,Grocock R J,van Dongen S, et al.MiRBase: MicroRNA sequences, targets and gene nomenclature[].Nucleic Acids Research.2006
  • 4Pesole G,Liuni S,Grillo G, et al.UTRdb and UTRsite: Specialized databases of sequences and functional elements of 5‘- and 3‘- untranslated regions of eukaryotic mRNAs[].Nucleic Acids Research.2002
  • 5Xia H Y,Li F,He T, et al.Distribution of maturemicroRNA on its precursor: A new character for microRNA prediction[].International Journal of Information Technology.2005
  • 6Truman J W,Riddiford L M.The origins of insect metamorphosis[].Nature.1999
  • 7Sempere L F,Sokol N S,Dubrovsky E B, et al.Temporal regulation of microRNA expression in Drosophila melanogaster mediated by hormonal signals and broad- complex gene activity[].Developmental Biology.2003
  • 8Lim L P,Lau N C,Weinstein E G,et al.The microRNAs of Caenorhabditis elegans[].Genes and Development.2003
  • 9Pfeffer S,Zavolan M,Grasser F A,et al.Identification of virus-encoded microRNAs[].Science.2004
  • 10Hofacker IL.Vienna RNA secondary structure server[].Nucleic Acids Research.2003

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部