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1
Analysis of new functional profiles of protein isoforms yielded by ds exonization in rice.
Evol Bioinform Online. 2013 Oct 9;9:417-27. doi: 10.4137/EBO.S12757. eCollection 2013.
2
Genome-wide survey of ds exonization to enrich transcriptomes and proteomes in plants.
Evol Bioinform Online. 2012;8:575-87. doi: 10.4137/EBO.S10324. Epub 2012 Oct 8.
3
The extent of Ds1 transposon to enrich transcriptomes and proteomes by exonization.
Bot Stud. 2013 Dec;54(1):14. doi: 10.1186/1999-3110-54-14. Epub 2013 Aug 21.
4
Ds transposon is biased towards providing splice donor sites for exonization in transgenic tobacco.
Plant Mol Biol. 2012 Jul;79(4-5):509-19. doi: 10.1007/s11103-012-9927-9. Epub 2012 May 27.
5
The Transposon Provides Messages That Yield Unique Profiles of Protein Isoforms and Acts Synergistically With to Enrich Proteome Complexity via Exonization.
Evol Bioinform Online. 2017 Feb 23;13:1176934317690410. doi: 10.1177/1176934317690410. eCollection 2017.
6
Characteristics of transposable element exonization within human and mouse.
PLoS One. 2010 Jun 1;5(6):e10907. doi: 10.1371/journal.pone.0010907.
7
The role of transposable elements in the evolution of non-mammalian vertebrates and invertebrates.
Genome Biol. 2010;11(6):R59. doi: 10.1186/gb-2010-11-6-r59. Epub 2010 Jun 2.
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Intron Retention and TE Exonization Events in ZRANB2.
Comp Funct Genomics. 2012;2012:170208. doi: 10.1155/2012/170208. Epub 2012 Jun 17.

引用本文的文献

1
Identification of transposable elements fused in the exonic region of the olive flounder genome.
Genes Genomics. 2018 Jul;40(7):707-713. doi: 10.1007/s13258-018-0676-2. Epub 2018 Mar 9.
2
The Transposon Provides Messages That Yield Unique Profiles of Protein Isoforms and Acts Synergistically With to Enrich Proteome Complexity via Exonization.
Evol Bioinform Online. 2017 Feb 23;13:1176934317690410. doi: 10.1177/1176934317690410. eCollection 2017.
3
A Deluge of Complex Repeats: The Solanum Genome.
PLoS One. 2015 Aug 4;10(8):e0133962. doi: 10.1371/journal.pone.0133962. eCollection 2015.

本文引用的文献

1
The extent of Ds1 transposon to enrich transcriptomes and proteomes by exonization.
Bot Stud. 2013 Dec;54(1):14. doi: 10.1186/1999-3110-54-14. Epub 2013 Aug 21.
2
Genome-wide survey of ds exonization to enrich transcriptomes and proteomes in plants.
Evol Bioinform Online. 2012;8:575-87. doi: 10.4137/EBO.S10324. Epub 2012 Oct 8.
4
Ds transposon is biased towards providing splice donor sites for exonization in transgenic tobacco.
Plant Mol Biol. 2012 Jul;79(4-5):509-19. doi: 10.1007/s11103-012-9927-9. Epub 2012 May 27.
5
Exonization of transposed elements: A challenge and opportunity for evolution.
Biochimie. 2011 Nov;93(11):1928-34. doi: 10.1016/j.biochi.2011.07.014. Epub 2011 Jul 26.
6
The role of transposable elements in the evolution of non-mammalian vertebrates and invertebrates.
Genome Biol. 2010;11(6):R59. doi: 10.1186/gb-2010-11-6-r59. Epub 2010 Jun 2.
8
Transposable elements and the evolution of regulatory networks.
Nat Rev Genet. 2008 May;9(5):397-405. doi: 10.1038/nrg2337.
9
Multifactorial interplay controls the splicing profile of Alu-derived exons.
Mol Cell Biol. 2008 May;28(10):3513-25. doi: 10.1128/MCB.02279-07. Epub 2008 Mar 10.
10
TranspoGene and microTranspoGene: transposed elements influence on the transcriptome of seven vertebrates and invertebrates.
Nucleic Acids Res. 2008 Jan;36(Database issue):D47-52. doi: 10.1093/nar/gkm949. Epub 2007 Nov 5.

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