[1] |
Adenot, X., Elmayan, T., Lauressergues, D. et al. Curr. Biol., 16 (2006),pp. 927-932
|
[2] |
Aida, M., Ishida, T., Tasaka, M. Development, 126 (1999),pp. 1563-1570
|
[3] |
Allen, E., Xie, Z., Gustafson, A.M. et al. Cell, 121 (2005),pp. 207-221
|
[4] |
Baker, C.C., Sieber, P., Wellmer, F. et al. Curr. Biol., 15 (2005),pp. 303-315
|
[5] |
Bao, N., Lye, K.W., Barton, M.K. Dev. Cell, 7 (2004),pp. 653-662
|
[6] |
Barkoulas, M., Hay, A., Kougioumoutzi, E. et al. Nat. Genet., 40 (2008),pp. 1136-1141
|
[7] |
Bartel, D.P., Chen, C.Z. Micromanagers of gene expression: the potentially widespread influence of metazoan microRNAs Nat. Rev. Genet., 5 (2004),pp. 396-400
|
[8] |
Berger, Y., Harpaz-Saad, S., Brand, A. et al. The NAC-domain transcription factor GOBLET specifies leaflet boundaries in compound tomato leaves Development, 136 (2009),pp. 823-832
|
[9] |
Blein, T., Pulido, A., Vialette-Guiraud, A. et al. A conserved molecular framework for compound leaf development Science, 322 (2008),pp. 1835-1839
|
[10] |
Brodersen, P., Voinnet, O. Revisiting the principles of microRNA target recognition and mode of action Nat. Rev. Mol. Cell Biol., 10 (2009),pp. 141-148
|
[11] |
Brodersen, P., Sakvarelidze-Achard, L., Bruun-Rasmussen, M. et al. Widespread translational inhibition by plant miRNAs and siRNAs Science, 320 (2008),pp. 1185-1190
|
[12] |
, Strable, J., Zhang, X., Ohtsu, K. et al. Microdissection of shoot meristem functional domains PLoS Genet., 5 (2009),p. e1000476
|
[13] |
Chitwood, D.H., Nogueira, F.T., Howell, M.D. et al. Pattern formation via small RNA mobility Genes Dev., 23 (2009),pp. 549-554
|
[14] |
Cubas, P., Lauter, N., Doebley, J. et al. The TCP domain: a motif found in proteins regulating plant growth and development Plant J., 18 (1999),pp. 215-222
|
[15] |
Fahlgren, N., Montgomery, T.A., Howell, M.D. et al. Curr. Biol., 16 (2006),pp. 939-944
|
[16] |
Garcia, D., Collier, S.A., Byrne, M.E. et al. Curr. Biol., 16 (2006),pp. 933-938
|
[17] |
Guo, H.S., Xie, Q., Fei, J.F. et al. MicroRNA directs mRNA cleavage of the transcription factor NAC1 to downregulate auxin signals for arabidopsis lateral root development Plant Cell, 17 (2005),pp. 1376-1386
|
[18] |
Heisler, M.G., Ohno, C., Das, P. et al. Curr. Biol., 15 (2005),pp. 1899-1911
|
[19] |
Hornstein, E., Shomron, N. Canalization of development by microRNAs Nat. Genet., 38 (2006),pp. S20-S24
|
[20] |
Hunter, C., Willmann, M.R., Wu, G. et al. Development, 133 (2006),pp. 2973-2981
|
[21] |
Husbands, A.Y., Chitwood, D.H., Plavskin, Y, Timmermans, M.C. Signals and prepatterns: new insights into organ polarity in plants Genes Dev., 23 (2009),pp. 1986-1997
|
[22] |
Juarez, M.T., Kui, J.S., Thomas, J. et al. microRNA-mediated repression of rolled leaf1 specifies maize leaf polarity Nature, 428 (2004),pp. 84-88
|
[23] |
Juarez, M.T., Twigg, R.W., Timmermans, M.C. Specification of adaxial cell fate during maize leaf development Development, 131 (2004),pp. 4533-4544
|
[24] |
Jung, J.H., Park, C.M. Planta, 225 (2007),pp. 1327-1338
|
[25] |
Kasschau, K.D., Xie, Z., Allen, E. et al. Dev. Cell, 4 (2003),pp. 205-217
|
[26] |
Kidner, C.A., Martienssen, R.A. Spatially restricted microRNA directs leaf polarity through ARGONAUTE1 Nature, 428 (2004),pp. 81-84
|
[27] |
Kidner, C.A., Timmermans, M.C. Mixing and matching pathways in leaf polarity Curr. Opin. Plant Biol., 10 (2007),pp. 13-20
|
[28] |
Kidner, C.A., Umbreen, S.U. Why is leaf shape so variable International Journal of Plant Development, 3 (2010)
|
[29] |
Koenig, D., Bayer, E., Kang, J. et al. Development, 136 (2009),pp. 2997-3006
|
[30] |
Koyama, T., Furutani, M., Tasaka, M. et al. Plant Cell, 19 (2007),pp. 473-484
|
[31] |
Kutter, C., Schob, H., Stadler, M. et al. Plant Cell, 19 (2007),pp. 2417-2429
|
[32] |
Lanet, E., Delannoy, E., Sormani, R. et al. Plant Cell, 21 (2009),pp. 1762-1768
|
[33] |
Laufs, P., Peaucelle, A., Morin, H. et al. Development, 131 (2004),pp. 4311-4322
|
[34] |
Levine, E., McHale, P., Levine, H. Small regulatory RNAs may sharpen spatial expression patterns PLoS Comput. Biol., 3 (2007),p. e233
|
[35] |
Li, H., Xu, L., Wang, H. et al. Plant Cell, 17 (2005),pp. 2157-2171
|
[36] |
Liu, D., Song, Y., Chen, Z. et al. Physiol. Plant, 136 (2009),pp. 223-236
|
[37] |
Liu, Q., Yao, X., Pi, L. et al. Plant J., 58 (2008),pp. 27-40
|
[38] |
Mallory, A.C., Dugas, D.V., Bartel, D.P. et al. MicroRNA regulation of NAC-domain targets is required for proper formation and separation of adjacent embryonic, vegetative, and floral organs Curr. Biol., 14 (2004),pp. 1035-1046
|
[39] |
McConnell, J.R., Emery, J., Eshed, Y. et al. Nature, 411 (2001),pp. 709-713
|
[40] |
Montgomery, T.A., Howell, M.D., Cuperus, J.T. et al. Specificity of ARGONAUTE7-miR390 interaction and dual functionality in TAS3 trans-acting siRNA formation Cell, 133 (2008),pp. 128-141
|
[41] |
Nagasaki, H., Itoh, J., Hayashi, K. et al. The small interfering RNA production pathway is required for shoot meristem initiation in rice Proc. Natl. Acad. Sci. USA, 104 (2007),pp. 14867-14871
|
[42] |
Nath, U., Crawford, B.C., Carpenter, R. et al. Genetic control of surface curvature Science, 299 (2003),pp. 1404-1407
|
[43] |
Newman, K.L., Fernandez, A.G., Barton, M.K. Plant Cell, 14 (2002),pp. 3029-3042
|
[44] |
Nikovics, K., Blein, T., Peaucelle, A. et al. Plant Cell, 18 (2006),pp. 2929-2945
|
[45] |
Nogueira, F.T., Madi, S., Chitwood, D.H. et al. Two small regulatory RNAs establish opposing fates of a developmental axis Genes Dev., 21 (2007),pp. 750-755
|
[46] |
Nogueira, F.T., Chitwood, D.H., Madi, S. et al. Regulation of small RNA accumulation in the maize shoot apex PLoS Genet., 5 (2009),p. e1000320
|
[47] |
Ori, N., Cohen, A.R., Etzioni, A. et al. Nat. Genet., 39 (2007),pp. 787-791
|
[48] |
Otsuga, D., DeGuzman, B., Prigge, M.J. et al. Plant J., 25 (2001),pp. 223-236
|
[49] |
Palatnik, J.F., Allen, E., Wu, X. et al. Control of leaf morphogenesis by microRNAs Nature, 425 (2003),pp. 257-263
|
[50] |
Palatnik, J.F., Wollmann, H., Schommer, C. et al. Dev. Cell, 13 (2007),pp. 115-125
|
[51] |
Pekker, I., Alvarez, J.P., Eshed, Y. Plant Cell, 17 (2005),pp. 2899-2910
|
[52] |
Peragine, A., Yoshikawa, M., Wu, G. et al. Genes Dev., 18 (2004),pp. 2368-2379
|
[53] |
Raman, S., Greb, T., Peaucelle, A. et al. Plant J., 55 (2008),pp. 65-76
|
[54] |
Reinhardt, D., Frenz, M., Mandel, T. et al. Microsurgical and laser ablation analysis of leaf positioning and dorsoventral patterning in tomato Development, 132 (2005),pp. 15-26
|
[55] |
Reinhardt, D., Pesce, E.R., Stieger, P. et al. Regulation of phyllotaxis by polar auxin transport Nature, 426 (2003),pp. 255-260
|
[56] |
Reinhart, B.J., Weinstein, E.G., Rhoades, M.W. et al. MicroRNAs in plants Genes Dev., 16 (2002),pp. 1616-1626
|
[57] |
Rhoades, M.W., Reinhart, B.J., Lim, L.P. et al. Prediction of plant microRNA targets Cell, 110 (2002),pp. 513-520
|
[58] |
Schommer, C., Palatnik, J.F., Aggarwal, P. et al. PLoS Biol., 6 (2008),p. e230
|
[59] |
Schwab, R., Ossowski, S., Riester, M. et al. Plant Cell, 18 (2006),pp. 1121-1133
|
[60] |
Schwab, R., Maizel, A., Ruiz-Ferrer, V. et al. PLoS One, 4 (2009),p. e5980
|
[61] |
Sessions, A., Nemhauser, J.L., McColl, A. et al. Development, 124 (1997),pp. 4481-4491
|
[62] |
Sieber, P., Wellmer, F., Gheyselinck, J. et al. Redundancy and specialization among plant microRNAs: Role of the MIR164 family in developmental robustness Development, 134 (2007),pp. 1051-1060
|
[63] |
Souer, E., van Houwelingen, A., Kloos, D. et al. Cell, 85 (1996),pp. 159-170
|
[64] |
Steeves, T.A., Sussex, I.M.
|
[65] |
Sussex, I.M. Phytomorphlogy, 5 (1955),pp. 253-273
|
[66] |
Takada, S., Hibara, K., Ishida, T. et al. Development, 128 (2001),pp. 1127-1135
|
[67] |
Talbert, P.B., Adler, H.T., Parks, D.W. et al. Development, 121 (1995),pp. 2723-2735
|
[68] |
Tiwari, S.B., Hagen, G., Guilfoyle, T. The roles of auxin response factor domains in auxin-responsive transcription Plant Cell, 15 (2003),pp. 533-543
|
[69] |
Ulmasov, T., Hagen, G., Guilfoyle, T.J. Activation and repression of transcription by auxin-response factors Proc. Natl. Acad. Sci. USA, 96 (1999),pp. 5844-5849
|
[70] |
Ulmasov, T., Hagen, G., Guilfoyle, T.J. Dimerization and DNA binding of auxin response factors Plant J., 19 (1999),pp. 309-319
|
[71] |
Usami, T., Horiguchi, G., Yano, S. et al. Development, 136 (2009),pp. 955-964
|
[72] |
Voinnet, O. Origin, biogenesis, and activity of plant microRNAs Cell, 136 (2009),pp. 669-687
|
[73] |
Vroemen, C.W., Mordhorst, A.P., Albrecht, C. et al. Plant Cell, 15 (2003),pp. 1563-1577
|
[74] |
Weir, I., Lu, J., Cook, H. et al. Development, 131 (2004),pp. 915-922
|
[75] |
Wenkel, S., Emery, J., Hou, B.H. et al. Plant Cell, 19 (2007),pp. 3379-3390
|
[76] |
Williams, L., Carles, C.C., Osmont, K.S. et al. Proc. Natl. Acad. Sci. USA, 102 (2005),pp. 9703-9708
|
[77] |
Williams, L., Grigg, S.P., Xie, M. et al. Development, 132 (2005),pp. 3657-3668
|
[78] |
Wu, F., Yu, L., Cao, W. et al. Plant Cell, 19 (2007),pp. 914-925
|
[79] |
Wu, G., Park, M.Y., Conway, S.R. et al. Cell, 138 (2009),pp. 750-759
|
[80] |
Zhang, J., Chen, R., Xiao, J. et al. J. Plant Res., 120 (2007),pp. 671-678
|
[81] |
Zhong, R., Ye, Z.H. Plant Cell, 11 (1999),pp. 2139-2152
|
[82] |
Zhong, R., Ye, Z.H. Plant Signal Behav., 2 (2007),pp. 351-353
|
[83] |
Zhou, G.K., Kubo, M., Zhong, R. et al. Plant Cell Physiol., 48 (2007),pp. 391-404
|
[84] |
Zimmermann, R., Werr, W. Plant Mol. Biol., 58 (2005),pp. 669-685
|