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    Results: 1 to 20 of 362

    1.

    Identification of precursor transcripts for 6 novel miRNAs expands the diversity on the genomic organisation and expression of miRNA genes in rice.

    Lacombe S, Nagasaki H, Santi C, Duval D, Piégu B, Bangratz M, Breitler JC, Guiderdoni E, Brugidou C, Hirsch J, Cao X, Brice C, Panaud O, Karlowski WM, Sato Y, Echeverria M.

    BMC Plant Biol. 2008 Dec 2;8:123.PMID: 19055717 [PubMed - indexed for MEDLINE]Related articlesFree article

    2.

    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(12):4951-6. Epub 2008 Mar 19.PMID: 18353984 [PubMed - indexed for MEDLINE]Related articlesFree article

    3.

    Cloning and characterization of microRNAs from rice.

    Sunkar R, Girke T, Jain PK, Zhu JK.

    Plant Cell. 2005 May;17(5):1397-411. Epub 2005 Apr 1.PMID: 15805478 [PubMed - indexed for MEDLINE]Related articlesFree article

    4.

    Genomic analysis of rice microRNA promoters and clusters.

    Cui X, Xu SM, Mu DS, Yang ZM.

    Gene. 2009 Feb 15;431(1-2):61-6. Epub 2008 Nov 24.PMID: 19073239 [PubMed - indexed for MEDLINE]Related articles

    5.

    Conservation and divergence of microRNAs in Populus.

    Barakat A, Wall PK, Diloreto S, Depamphilis CW, Carlson JE.

    BMC Genomics. 2007 Dec 31;8:481.PMID: 18166134 [PubMed - indexed for MEDLINE]Related articlesFree article

    6.

    Identification of novel and candidate miRNAs in rice by high throughput sequencing.

    Sunkar R, Zhou X, Zheng Y, Zhang W, Zhu JK.

    BMC Plant Biol. 2008 Feb 29;8:25.PMID: 18312648 [PubMed - indexed for MEDLINE]Related articlesFree article

    7.

    A diverse set of microRNAs and microRNA-like small RNAs in developing rice grains.

    Zhu QH, Spriggs A, Matthew L, Fan L, Kennedy G, Gubler F, Helliwell C.

    Genome Res. 2008 Sep;18(9):1456-65. Epub 2008 Aug 7.PMID: 18687877 [PubMed - indexed for MEDLINE]Related articlesFree article

    8.

    Prediction and identification of Arabidopsis thaliana microRNAs and their mRNA targets.

    Wang XJ, Reyes JL, Chua NH, Gaasterland T.

    Genome Biol. 2004;5(9):R65. Epub 2004 Aug 31.PMID: 15345049 [PubMed - indexed for MEDLINE]Related articlesFree article

    9.

    Identification of 20 microRNAs from Oryza sativa.

    Wang JF, Zhou H, Chen YQ, Luo QJ, Qu LH.

    Nucleic Acids Res. 2004 Mar 12;32(5):1688-95. Print 2004.PMID: 15020705 [PubMed - indexed for MEDLINE]Related articlesFree article

    10.

    CARPEL FACTORY, a Dicer homolog, and HEN1, a novel protein, act in microRNA metabolism in Arabidopsis thaliana.

    Park W, Li J, Song R, Messing J, Chen X.

    Curr Biol. 2002 Sep 3;12(17):1484-95.PMID: 12225663 [PubMed - indexed for MEDLINE]Related articles

    11.

    Heavy metal-regulated new microRNAs from rice.

    Huang SQ, Peng J, Qiu CX, Yang ZM.

    J Inorg Biochem. 2009 Feb;103(2):282-7. Epub 2008 Nov 7.PMID: 19081140 [PubMed - indexed for MEDLINE]Related articles

    12.

    Duplication and expression analysis of multicopy miRNA gene family members in Arabidopsis and rice.

    Jiang D, Yin C, Yu A, Zhou X, Liang W, Yuan Z, Xu Y, Yu Q, Wen T, Zhang D.

    Cell Res. 2006 May;16(5):507-18.PMID: 16699546 [PubMed - indexed for MEDLINE]Related articlesFree article

    13.

    Rice embryogenic calli express a unique set of microRNAs, suggesting regulatory roles of microRNAs in plant post-embryogenic development.

    Luo YC, Zhou H, Li Y, Chen JY, Yang JH, Chen YQ, Qu LH.

    FEBS Lett. 2006 Sep 18;580(21):5111-6. Epub 2006 Sep 1.PMID: 16959252 [PubMed - indexed for MEDLINE]Related articles

    14.

    Computational identification of plant microRNAs and their targets, including a stress-induced miRNA.

    Jones-Rhoades MW, Bartel DP.

    Mol Cell. 2004 Jun 18;14(6):787-99.PMID: 15200956 [PubMed - indexed for MEDLINE]Related articles

    15.

    Systematic analysis of alternative first exons in plant genomes.

    Chen WH, Lv G, Lv C, Zeng C, Hu S.

    BMC Plant Biol. 2007 Oct 17;7:55.PMID: 17941993 [PubMed - indexed for MEDLINE]Related articlesFree article

    16.

    Identification and characterization of endogenous small interfering RNAs from rice.

    Sunkar R, Girke T, Zhu JK.

    Nucleic Acids Res. 2005 Aug 2;33(14):4443-54. Print 2005.PMID: 16077027 [PubMed - indexed for MEDLINE]Related articlesFree article

    17.

    Identification and characteristics of microRNAs from Bombyx mori.

    He PA, Nie Z, Chen J, Chen J, Lv Z, Sheng Q, Zhou S, Gao X, Kong L, Wu X, Jin Y, Zhang Y.

    BMC Genomics. 2008 May 28;9:248.PMID: 18507836 [PubMed - indexed for MEDLINE]Related articlesFree article

    18.

    Detection of 91 potential conserved plant microRNAs in Arabidopsis thaliana and Oryza sativa identifies important target genes.

    Bonnet E, Wuyts J, Rouzé P, Van de Peer Y.

    Proc Natl Acad Sci U S A. 2004 Aug 3;101(31):11511-6. Epub 2004 Jul 22. Erratum in: Proc Natl Acad Sci U S A. 2005 Mar 22;102(12):4655. PMID: 15272084 [PubMed - indexed for MEDLINE]Related articlesFree article

    19.

    Data mining for miRNAs and their targets in the Triticeae.

    Dryanova A, Zakharov A, Gulick PJ.

    Genome. 2008 Jun;51(6):433-43.PMID: 18521122 [PubMed - indexed for MEDLINE]Related articles

    20.

    Computational identification of novel family members of microRNA genes in Arabidopsis thaliana and Oryza sativa.

    Li Y, Li W, Jin YX.

    Acta Biochim Biophys Sin (Shanghai). 2005 Feb;37(2):75-87.PMID: 15685364 [PubMed - indexed for MEDLINE]Related articlesFree article

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