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山国武获论文在线 rnas in cell differentiation and [34] Shukla L I, Chinnusamy V, Sunkar R. The role of microRNAs and other endogenous small RNAs in plant 290 stress responses[J]. Biochimica et Biophysica Acta(BBA)-Gene latory Mechanisms, 2008, 1779(11) [35] Franco-Zorrilla J M, Valli A, Todesco M, et al. Target mimicry provides a new mechanism for regulation of microRNa activity]. Nature Genetics, 2007, 39(8): 1033-1037. 295 [36]Chitwood D H, Timmermans M C P. Target mimics modulate miRNAs[J]. Nature Genetics, 2007, 39(8) 935-936 [37 Todesco M, Rubio-Somoza I Paz-Ares J, et al. A collection of target mimics for comprehensive analysis of microRNA function in Arabidopsis thaliana p]. PLoS Genetics, 2010, 6(7): e1001031 38 Meng Y, Shao C, Wang H, et al. Target mimics: an embedded layer of microRNA-involved gene regulatory networks in plants[J]. BMC Genomics, 2012, 13(1) 300 [39] Pearson WR Searching protein sequence libraries: comparison of the sensitivity and selectivity of the Smith-Waterman and FASTa algorithms J]. Genomics, 1991, 11(3): 635-650 [40] Pearson WR Flexible sequence similarity searching with the FASTA3 program package [My/Bioinformatics methods and Protocols. Humana Press. 1999: 185-219 305 [41] Banks I R, Zhang Y, Wiggins B E, et al. RNA decoys: An emerging component of plant regulatory networks?]. Plant signaling Behavior, 2012, 79): 1188-1193 [42]Wu H J, Wang Z M, Wang M, et al. widespread Long Noncoding RNAs as Endogenous Target Mimics for MicroRNAs in Plants[J]. Plant Physiology, 2013, 161 (4): 1875-1884http://www.paper.edu.cn - 9 - 中国科技论文在线 [33] Garcia D. A miRacle in plant development: role of microRNAs in cell differentiation and patterning[C]//Seminars in cell & Developmental biology, 2008, 19(6): 586-595. [34] Shukla L I, Chinnusamy V, Sunkar R. The role of microRNAs and other endogenous small RNAs in plant 290 stress responses[J]. Biochimica et Biophysica Acta (BBA)-Gene Regulatory Mechanisms, 2008, 1779(11): 743-748. [35] Franco-Zorrilla J M, Valli A, Todesco M, et al. Target mimicry provides a new mechanism for regulation of microRNA activity[J]. Nature Genetics, 2007, 39(8): 1033-1037. [36] Chitwood D H, Timmermans M C P. Target mimics modulate miRNAs[J]. Nature Genetics, 2007, 39(8): 295 935-936. [37] Todesco M, Rubio-Somoza I, Paz-Ares J, et al. A collection of target mimics for comprehensive analysis of microRNA function in Arabidopsis thaliana[J]. PLoS Genetics, 2010, 6(7): e1001031. [38] Meng Y, Shao C, Wang H, et al. Target mimics: an embedded layer of microRNA-involved gene regulatory networks in plants[J]. BMC Genomics, 2012, 13(1): 197. 300 [39] Pearson W R. Searching protein sequence libraries: comparison of the sensitivity and selectivity of the Smith-Waterman and FASTA algorithms[J]. Genomics, 1991, 11(3): 635-650. [40] Pearson W R. Flexible sequence similarity searching with the FASTA3 program package[M]//Bioinformatics methods and Protocols. Humana Press, 1999: 185-219. [41] Banks I R, Zhang Y, Wiggins B E, et al. RNA decoys: An emerging component of plant regulatory 305 networks?[J]. Plant signaling & Behavior, 2012, 7(9): 1188-1193. [42] Wu H J, Wang Z M, Wang M, et al. Widespread Long Noncoding RNAs as Endogenous Target Mimics for MicroRNAs in Plants[J]. Plant Physiology, 2013, 161(4): 1875-1884
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