Log on / register
Feedback | Support | My details
Genome-wide prediction and identification of cis-natural antisense transcripts in Arabidopsis thaliana.
Wang XJ, Gaasterland T, Chua NH
Genome Biol 2005, 6:R30
[Full text] [PubMed] [Related articles] [F1000 Biology] [Cited on BioMed Central]


printer friendly 
to  [Help]

PubMed Central articles that cite the above article:

1.
A novel chimeric gene, siren, with retroposed promoter sequence in the Drosophila bipectinata complex.
Nozawa M, Aotsuka T, Tamura K
Genetics 2005 Dec, 171:1719-27
[PubMed Central] [PubMed] [Related articles]

2.
Highly specific gene silencing by artificial microRNAs in Arabidopsis.
Schwab R, Ossowski S, Riester M, Warthmann N, Weigel D
Plant Cell 2006 May, 18:1121-33
[PubMed Central] [PubMed] [Related articles]

3.
Genome-wide in silico identification and analysis of cis natural antisense transcripts (cis-NATs) in ten species.
Zhang Y, Liu XS, Liu QR, Wei L
Nucleic Acids Res 2006, 34:3465-75
[PubMed Central] [PubMed] [Related articles]

4.
Temporal regulation of shoot development in Arabidopsis thaliana by miR156 and its target SPL3.
Wu G, Poethig RS
Development 2006 Sep, 133:3539-47
[PubMed Central] [PubMed] [Related articles]

5.
NATsDB: Natural Antisense Transcripts DataBase.
Zhang Y, Li J, Kong L, Gao G, Liu QR, Wei L
Nucleic Acids Res 2007 Jan, 35:D156-61
[PubMed Central] [PubMed] [Related articles]

6.
A pathogen-inducible endogenous siRNA in plant immunity.
Katiyar-Agarwal S, Morgan R, Dahlbeck D, Borsani O, Villegas A, Zhu JK, Staskawicz BJ, Jin H
Proc Natl Acad Sci U S A 2006 Nov 21, 103:18002-7
[PubMed Central] [PubMed] [Related articles]

7.
*** Unable to retrieve article 17082204 ***

[PubMed Central] [PubMed] [Related articles]

8.
Genome-wide natural antisense transcription: coupling its regulation to its different regulatory mechanisms.
Lapidot M, Pilpel Y
EMBO Rep 2006 Dec, 7:1216-22
[PubMed Central] [PubMed] [Related articles]

9.
Global identification and characterization of transcriptionally active regions in the rice genome.
Li L, Wang X, Sasidharan R, Stolc V, Deng W, He H, Korbel J, Chen X, Tongprasit W, Ronald P, Chen R, Gerstein M, Wang Deng X
PLoS ONE 2007, 2:e294
[PubMed Central] [PubMed] [Related articles]

10.
Genome-wide analysis of the RNA-DEPENDENT RNA POLYMERASE6/DICER-LIKE4 pathway in Arabidopsis reveals dependency on miRNA- and tasiRNA-directed targeting.
Howell MD, Fahlgren N, Chapman EJ, Cumbie JS, Sullivan CM, Givan SA, Kasschau KD, Carrington JC
Plant Cell 2007 Mar, 19:926-42
[PubMed Central] [PubMed] [Related articles]

11.
Distinct expression patterns of natural antisense transcripts in Arabidopsis.
Henz SR, Cumbie JS, Kasschau KD, Lohmann JU, Carrington JC, Weigel D, Schmid M
Plant Physiol 2007 Jul, 144:1247-55
[PubMed Central] [PubMed] [Related articles]

12.
A novel class of bacteria-induced small RNAs in Arabidopsis.
Katiyar-Agarwal S, Gao S, Vivian-Smith A, Jin H
Genes Dev 2007 Dec 1, 21:3123-34
[PubMed Central] [PubMed] [Related articles]

13.
Sugarcane functional genomics: gene discovery for agronomic trait development.
Menossi M, Silva-Filho MC, Vincentz M, Van-Sluys MA, Souza GM
Int J Plant Genomics 2008, 2008:458732
[PubMed Central] [PubMed] [Related articles]

14.
Genome-wide analysis for discovery of rice microRNAs reveals natural antisense microRNAs (nat-miRNAs).
Lu C, Jeong DH, Kulkarni K, Pillay M, Nobuta K, German R, Thatcher SR, Maher C, Zhang L, Ware D, Liu B, Cao X, Meyers BC, Green PJ
Proc Natl Acad Sci U S A 2008 Mar 25, 105:4951-6
[PubMed Central] [PubMed] [Related articles]


This article is also cited by 8 articles in BioMed Central


You can also check ISI Web of Science for additional citations (subscription required)
printer friendly 
to  [Help]

© 1999-2008 BioMed Central Ltd unless otherwise stated. Part of Springer Science+Business Media.