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Plant MicroRNAs and Development

Gang Wu

Gang Wu. Plant MicroRNAs and Development[J]. Journal of Genetics and Genomics, 2013, 40(5): 217-230. doi: 10.1016/j.jgg.2013.04.002
Citation: Gang Wu. Plant MicroRNAs and Development[J]. Journal of Genetics and Genomics, 2013, 40(5): 217-230. doi: 10.1016/j.jgg.2013.04.002

doi: 10.1016/j.jgg.2013.04.002

Plant MicroRNAs and Development

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  • [1] Achard, P., Herr, A., Baulcombe, D.C. et al. Modulation of floral development by a gibberellin-regulated microRNA Development, 131 (2004),pp. 3357-3365
    [2] Allen, R.S., Li, J., Stahle, M.I. et al. Proc. Natl. Acad. Sci. USA, 104 (2007),pp. 16371-16376
    [3] Aukerman, M.J., Sakai, H. Plant Cell, 15 (2003),pp. 2730-2741
    [4] Baker, C.C., Sieber, P., Wellmer, F. et al. Curr. Biol., 15 (2005),pp. 303-315
    [5] Bari, R., Datt Pant, B., Stitt, M. et al. Plant Physiol., 141 (2006),pp. 988-999
    [6] Baumberger, N., Baulcombe, D.C. Proc. Natl. Acad. Sci. USA, 102 (2005),pp. 11928-11933
    [7] Ben Chaabane, S., Liu, R., Chinnusamy, V. et al. Nucleic Acids Res., 41 (2013),pp. 1984-1997
    [8] Berardini, T.Z., Bollman, K., Sun, H. et al. Science, 291 (2001),pp. 2405-2407
    [9] Bohmert, K., Camus, I., Bellini, C. et al. EMBO J., 17 (1998),pp. 170-180
    [10] Bollman, K.M., Aukerman, M.J., Park, M.Y. et al. Development, 130 (2003),pp. 1493-1504
    [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] Brodersen, P., Sakvarelidze-Achard, L., Schaller, H. et al. Proc. Natl. Acad. Sci. USA, 109 (2012),pp. 1778-1783
    [13] Burk, D.H., Liu, B., Zhong, R. et al. A katanin-like protein regulates normal cell wall biosynthesis and cell elongation Plant Cell, 13 (2001),pp. 807-827
    [14] Calderon-Villalobos, L.I., Kuhnle, C., Dohmann, E.M. et al. Plant Cell, 17 (2005),pp. 2473-2485
    [15] Carlsbecker, A., Lee, J.Y., Roberts, C.J. et al. Cell signalling by microRNA165/6 directs gene dose-dependent root cell fate Nature, 465 (2010),pp. 316-321
    [16] Castle, L.A., Errampalli, D., Atherton, T.L. et al. Mol. Gen. Genet., 241 (1993),pp. 504-514
    [17] Chen, X. Science, 303 (2004),pp. 2022-2025
    [18] Chen, X., Liu, J., Cheng, Y. et al. Development, 129 (2002),pp. 1085-1094
    [19] Chuck, G., Cigan, A.M., Saeteurn, K. et al. The heterochronic maize mutant Corngrass1 results from overexpression of a tandem microRNA Nat. Genet., 39 (2007),pp. 544-549
    [20] Chuck, G., Meeley, R., Irish, E. et al. The maize tasselseed4 microRNA controls sex determination and meristem cell fate by targeting Tasselseed6/indeterminate spikelet1 Nat. Genet., 39 (2007),pp. 1517-1521
    [21] Clarke, J.H., Tack, D., Findlay, K. et al. Plant J., 20 (1999),pp. 493-501
    [22] Deleris, A., Gallego-Bartolome, J., Bao, J. et al. Hierarchical action and inhibition of plant Dicer-like proteins in antiviral defense Science, 313 (2006),pp. 68-71
    [23] Dong, Z., Han, M.H., Fedoroff, N. Proc. Natl. Acad. Sci. USA, 105 (2008),pp. 9970-9975
    [24] Earley, K., Smith, M., Weber, R. et al. Silence, 1 (2010),p. 15
    [25] Earley, K.W., Poethig, R.S. J. Biol. Chem., 286 (2011),pp. 38184-38189
    [26] Emery, J.F., Floyd, S.K., Alvarez, J. et al. Curr. Biol., 13 (2003),pp. 1768-1774
    [27] Errampalli, D., Patton, D., Castle, L. et al. Plant Cell, 3 (1991),pp. 149-157
    [28] Eulalio, A., Rehwinkel, J., Stricker, M. et al. Target-specific requirements for enhancers of decapping in miRNA-mediated gene silencing Genes Dev., 21 (2007),pp. 2558-2570
    [29] Fagard, M., Boutet, S., Morel, J.B. et al. AGO1, QDE-2, and RDE-1 are related proteins required for post-transcriptional gene silencing in plants, quelling in fungi, and RNA interference in animals Proc. Natl. Acad. Sci. USA, 97 (2000),pp. 11650-11654
    [30] Fang, Y., Spector, D.L. Curr. Biol., 17 (2007),pp. 818-823
    [31] Franco-Zorrilla, J.M., Valli, A., Todesco, M. et al. Target mimicry provides a new mechanism for regulation of microRNA activity Nat. Genet., 39 (2007),pp. 1033-1037
    [32] Freeman, B.C., Toft, D.O., Morimoto, R.I. Molecular chaperone machines: chaperone activities of the cyclophilin Cyp-40 and the steroid aporeceptor-associated protein p23 Science, 274 (1996),pp. 1718-1720
    [33] Fujioka, Y., Utsumi, M., Ohba, Y. et al. Plant Cell Physiol., 48 (2007),pp. 1243-1253
    [34] Furumizu, C., Tsukaya, H., Komeda, Y. RNA, 16 (2010),pp. 1809-1817
    [35] Gandikota, M., Birkenbihl, R.P., Hohmann, S. et al. Plant J., 49 (2007),pp. 683-693
    [36] Goeres, D.C., Van Norman, J.M., Zhang, W. et al. Plant Cell, 19 (2007),pp. 1549-1564
    [37] Golden, T.A., Schauer, S.E., Lang, J.D. et al. Plant Physiol., 130 (2002),pp. 808-822
    [38] Gou, J.Y., Felippes, F.F., Liu, C.J. et al. Plant Cell, 23 (2011),pp. 1512-1522
    [39] Gregory, B.D., O'Malley, R.C., Lister, R. et al. Dev. Cell, 14 (2008),pp. 854-866
    [40] Grigg, S.P., Canales, C., Hay, A. et al. Nature, 437 (2005),pp. 1022-1026
    [41] Guo, H.S., Xie, Q., Fei, J.F. et al. Plant Cell, 17 (2005),pp. 1376-1386
    [42] Hajheidari, M., Farrona, S., Huettel, B. et al. Plant Cell, 24 (2012),pp. 1626-1642
    [43] Han, M.H., Goud, S., Song, L. et al. Proc. Natl. Acad. Sci. USA, 101 (2004),pp. 1093-1098
    [44] Hartman, J.J., Mahr, J., McNally, K. et al. Katanin, a microtubule-severing protein, is a novel AAA ATPase that targets to the centrosome using a WD40-containing subunit Cell, 93 (1998),pp. 277-287
    [45] Hiraguri, A., Itoh, R., Kondo, N. et al. Plant Mol. Biol., 57 (2005),pp. 173-188
    [46] Hoffmann, K., Handschumacher, R.E. Cyclophilin-40: evidence for a dimeric complex with hsp90 Biochem. J., 307 (1995),pp. 5-8
    [47] Houseley, J., Tollervey, D. The many pathways of RNA degradation Cell, 136 (2009),pp. 763-776
    [48] Huang, Y., Ji, L., Huang, Q. et al. Structural insights into mechanisms of the small RNA methyltransferase HEN1 Nature, 461 (2009),pp. 823-827
    [49] Hutvagner, G., Simard, M.J. Argonaute proteins: key players in RNA silencing Nat. Rev. Mol. Cell Biol., 9 (2008),pp. 22-32
    [50] Iki, T., Yoshikawa, M., Nishikiori, M. et al. Mol. Cell, 39 (2010),pp. 282-291
    [51] Iwasaki, S., Takeda, A., Motose, H. et al. FEBS Lett., 581 (2007),pp. 2455-2459
    [52] Jacobsen, S.E., Running, M.P., Meyerowitz, E.M. Development, 126 (1999),pp. 5231-5243
    [53] 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
    [54] Jung, J.H., Seo, P.J., Ahn, J.H. et al. J. Biol. Chem., 287 (2012),pp. 16007-16016
    [55] Jung, J.H., Seo, Y.H., Seo, P.J. et al. Plant Cell, 19 (2007),pp. 2736-2748
    [56] Kawashima, C.G., Yoshimoto, N., Maruyama-Nakashita, A. et al. Sulphur starvation induces the expression of microRNA-395 and one of its target genes but in different cell types Plant J., 57 (2009),pp. 313-321
    [57] Kidner, C.A., Martienssen, R.A. Spatially restricted microRNA directs leaf polarity through ARGONAUTE1 Nature, 428 (2004),pp. 81-84
    [58] Kim, J., Jung, J.H., Reyes, J.L. et al. Plant J., 42 (2005),pp. 84-94
    [59] Kim, S., Yang, J.Y., Xu, J. et al. Two cap-binding proteins CBP20 and CBP80 are involved in processing primary MicroRNAs Plant Cell Physiol., 49 (2008),pp. 1634-1644
    [60] Kim, Y.J., Zheng, B., Yu, Y. et al. EMBO J., 30 (2011),pp. 814-822
    [61] Koornneef, M., Hanhart, C.J., van der Veen, J.H. Mol. Gen. Genet., 229 (1991),pp. 57-66
    [62] Kurihara, Y., Takashi, Y., Watanabe, Y. The interaction between DCL1 and HYL1 is important for efficient and precise processing of pri-miRNA in plant microRNA biogenesis RNA, 12 (2006),pp. 206-212
    [63] Kurihara, Y., Watanabe, Y. Proc. Natl. Acad. Sci. USA, 101 (2004),pp. 12753-12758
    [64] Lanet, E., Delannoy, E., Sormani, R. et al. Plant Cell, 21 (2009),pp. 1762-1768
    [65] Lang, J.D., Ray, S., Ray, A. Genetics, 137 (1994),pp. 1101-1110
    [66] Laubinger, S., Sachsenberg, T., Zeller, G. et al. Proc. Natl. Acad. Sci. USA, 105 (2008),pp. 8795-8800
    [67] Laufs, P., Peaucelle, A., Morin, H. et al. Development, 131 (2004),pp. 4311-4322
    [68] Lauter, N., Kampani, A., Carlson, S. et al. Proc. Natl. Acad. Sci. USA, 102 (2005),pp. 9412-9417
    [69] Lee, B.H., Kapoor, A., Zhu, J. et al. Plant Cell, 18 (2006),pp. 1736-1749
    [70] Lee, R.C., Feinbaum, R.L., Ambros, V. Cell, 75 (1993),pp. 843-854
    [71] Li, J., Yang, Z., Yu, B. et al. Curr. Biol., 15 (2005),pp. 1501-1507
    [72] Liu, B., Li, P., Li, X. et al. Plant Physiol., 139 (2005),pp. 296-305
    [73] Liu, C., Axtell, M.J., Fedoroff, N.V. Plant Physiol., 159 (2012),pp. 748-758
    [74] Liu, J., Carmell, M.A., Rivas, F.V. et al. Argonaute2 is the catalytic engine of mammalian RNAi Science, 305 (2004),pp. 1437-1441
    [75] Liu, P.P., Montgomery, T.A., Fahlgren, N. et al. Plant J., 52 (2007),pp. 133-146
    [76] Liu, X., Huang, J., Wang, Y. et al. Plant J., 62 (2010),pp. 416-428
    [77] Lobbes, D., Rallapalli, G., Schmidt, D.D. et al. SERRATE: a new player on the plant microRNA scene EMBO Rep., 7 (2006),pp. 1052-1058
    [78] Lu, C., Fedoroff, N. Plant Cell, 12 (2000),pp. 2351-2366
    [79] Lu, C., Han, M.H., Guevara-Garcia, A. et al. Mitogen-activated protein kinase signaling in postgermination arrest of development by abscisic acid Proc. Natl. Acad. Sci. USA, 99 (2002),pp. 15812-15817
    [80] Lynn, K., Fernandez, A., Aida, M. et al. Development, 126 (1999),pp. 469-481
    [81] Machida, S., Chen, H.Y., Adam Yuan, Y. Nucleic Acids Res., 39 (2011),pp. 7828-7836
    [82] Mallory, A.C., Bartel, D.P., Bartel, B. Plant Cell, 17 (2005),pp. 1360-1375
    [83] 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
    [84] Mallory, A.C., Hinze, A., Tucker, M.R. et al. Redundant and specific roles of the ARGONAUTE proteins AGO1 and ZLL in development and small RNA-directed gene silencing PLoS Genet., 5 (2009),p. e1000646
    [85] Manavella, P.A., Hagmann, J., Ott, F. et al. Fast-forward genetics identifies plant CPL phosphatases as regulators of miRNA processing factor HYL1 Cell, 151 (2012),pp. 859-870
    [86] Martinez, N.J., Ow, M.C., Barrasa, M.I. et al. Genes Dev., 22 (2008),pp. 2535-2549
    [87] McConnell, J.R., Emery, J., Eshed, Y. et al. Nature, 411 (2001),pp. 709-713
    [88] McElver, J., Tzafrir, I., Aux, G. et al. Genetics, 159 (2001),pp. 1751-1763
    [89] McHale, N.A., Koning, R.E. Plant Cell, 16 (2004),pp. 1730-1740
    [90] McNally, F.J., Vale, R.D. Identification of katanin, an ATPase that severs and disassembles stable microtubules Cell, 75 (1993),pp. 419-429
    [91] McNally, K.P., Bazirgan, O.A., McNally, F.J. Two domains of p80 katanin regulate microtubule severing and spindle pole targeting by p60 katanin J. Cell Sci., 113 (2000),pp. 1623-1633
    [92] Mok, D., Allan, R.K., Carrello, A. et al. The chaperone function of cyclophilin 40 maps to a cleft between the prolyl isomerase and tetratricopeptide repeat domains FEBS Lett., 580 (2006),pp. 2761-2768
    [93] Morel, J.B., Godon, C., Mourrain, P. et al. Plant Cell, 14 (2002),pp. 629-639
    [94] Morris, E.R., Chevalier, D., Walker, J.C. Plant Physiol., 141 (2006),pp. 932-941
    [95] Moussian, B., Schoof, H., Haecker, A. et al. EMBO J., 17 (1998),pp. 1799-1809
    [96] Nakazawa, Y., Hiraguri, A., Moriyama, H. et al. The dsRNA-binding protein DRB4 interacts with the Dicer-like protein DCL4 in vivo and functions in the trans-acting siRNA pathway Plant Mol. Biol., 63 (2007),pp. 777-785
    [97] Nikovics, K., Blein, T., Peaucelle, A. et al. Plant Cell, 18 (2006),pp. 2929-2945
    [98] Nishimura, A., Ito, M., Kamiya, N. et al. Plant J., 30 (2002),pp. 189-201
    [99] 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
    [100] Ochando, I., Jover-Gil, S., Ripoll, J.J. et al. Plant Physiol., 141 (2006),pp. 607-619
    [101] Onodera, Y., Haag, J.R., Ream, T. et al. Plant nuclear RNA polymerase IV mediates siRNA and DNA methylation-dependent heterochromatin formation Cell, 120 (2005),pp. 613-622
    [102] Ori, N., Cohen, A.R., Etzioni, A. et al. Nat. Genet., 39 (2007),pp. 787-791
    [103] Owens-Grillo, J.K., Hoffmann, K., Hutchison, K.A. et al. The cyclosporin A-binding immunophilin CyP-40 and the FK506-binding immunophilin hsp56 bind to a common site on hsp90 and exist in independent cytosolic heterocomplexes with the untransformed glucocorticoid receptor J. Biol. Chem., 270 (1995),pp. 20479-20484
    [104] Palatnik, J.F., Allen, E., Wu, X. et al. Control of leaf morphogenesis by microRNAs Nature, 425 (2003),pp. 257-263
    [105] Palatnik, J.F., Wollmann, H., Schommer, C. et al. Dev. Cell, 13 (2007),pp. 115-125
    [106] Pare, J.M., Tahbaz, N., Lopez-Orozco, J. et al. Hsp90 regulates the function of argonaute 2 and its recruitment to stress granules and P-bodies Mol. Biol. Cell, 20 (2009),pp. 3273-3284
    [107] Park, M.Y., Wu, G., Gonzalez-Sulser, A. et al. Proc. Natl. Acad. Sci. USA, 102 (2005),pp. 3691-3696
    [108] Pasquinelli, A.E., Reinhart, B.J., Slack, F. et al. Conservation of the sequence and temporal expression of let-7 heterochronic regulatory RNA Nature, 408 (2000),pp. 86-89
    [109] Pasquinelli, A.E., Ruvkun, G. Control of developmental timing by micrornas and their targets Annu. Rev. Cell Dev. Biol., 18 (2002),pp. 495-513
    [110] Pirkl, F., Buchner, J. J. Mol. Biol., 308 (2001),pp. 795-806
    [111] Pouch-Pelissier, M.N., Pelissier, T., Elmayan, T. et al. PLoS Genet., 4 (2008),p. e1000096
    [112] Prigge, M.J., Wagner, D.R. Plant Cell, 13 (2001),pp. 1263-1279
    [113] Qi, Y., Denli, A.M., Hannon, G.J. Mol. Cell, 19 (2005),pp. 421-428
    [114] Rajagopalan, R., Vaucheret, H., Trejo, J. et al. Genes Dev., 20 (2006),pp. 3407-3425
    [115] Ramachandran, V., Chen, X. Science, 321 (2008),pp. 1490-1492
    [116] Ratajczak, T., Carrello, A. Cyclophilin 40 (CyP-40), mapping of its hsp90 binding domain and evidence that FKBP52 competes with CyP-40 for hsp90 binding J. Biol. Chem., 271 (1996),pp. 2961-2965
    [117] Ray, S., Golden, T., Ray, A. Dev. Biol., 180 (1996),pp. 365-369
    [118] Reinhart, B.J., Slack, F.J., Basson, M. et al. Nature, 403 (2000),pp. 901-906
    [119] Ren, G., Chen, X., Yu, B. Curr. Biol., 22 (2012),pp. 695-700
    [120] Ren, G., Xie, M., Dou, Y. et al. Proc. Natl. Acad. Sci. USA, 109 (2012),pp. 12817-12821
    [121] Reyes, J.L., Chua, N.H. Plant J., 49 (2007),pp. 592-606
    [122] Robinson-Beers, K., Pruitt, R.E., Gasser, C.S. Plant Cell, 4 (1992),pp. 1237-1249
    [123] Roll-Mecak, A., McNally, F.J. Microtubule-severing enzymes Curr. Opin. Cell Biol., 22 (2010),pp. 96-103
    [124] Schauer, S.E., Jacobsen, S.E., Meinke, D.W. et al. Trends Plant Sci., 7 (2002),pp. 487-491
    [125] Schommer, C., Palatnik, J.F., Aggarwal, P. et al. Control of jasmonate biosynthesis and senescence by miR319 targets PLoS Biol., 6 (2008),p. e230
    [126] Schwartz, B.W., Yeung, E.C., Meinke, D.W. Development, 120 (1994),pp. 3235-3245
    [127] Sheth, U., Parker, R. Decapping and decay of messenger RNA occur in cytoplasmic processing bodies Science, 300 (2003),pp. 805-808
    [128] 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
    [129] Smith, M.R., Willmann, M.R., Wu, G. et al. Proc. Natl. Acad. Sci. USA, 106 (2009),pp. 5424-5429
    [130] Song, L., Han, M.H., Lesicka, J. et al. Proc. Natl. Acad. Sci. USA, 104 (2007),pp. 5437-5442
    [131] Tagami, Y., Motose, H., Watanabe, Y. RNA, 15 (2009),pp. 450-458
    [132] Tahbaz, N., Kolb, F.A., Zhang, H. et al. Characterization of the interactions between mammalian PAZ PIWI domain proteins and Dicer EMBO Rep., 5 (2004),pp. 189-194
    [133] Valoczi, A., Hornyik, C., Varga, N. et al. Sensitive and specific detection of microRNAs by northern blot analysis using LNA-modified oligonucleotide probes Nucleic Acids Res., 32 (2004),p. e175
    [134] Vaucheret, H., Mallory, A.C., Bartel, D.P. AGO1 homeostasis entails coexpression of MIR168 and AGO1 and preferential stabilization of miR168 by AGO1 Mol. Cell, 22 (2006),pp. 129-136
    [135] Vaucheret, H., Vazquez, F., Crete, P. et al. Genes Dev., 18 (2004),pp. 1187-1197
    [136] Vazquez, F., Gasciolli, V., Crete, P. et al. The nuclear dsRNA binding protein HYL1 is required for microRNA accumulation and plant development, but not posttranscriptional transgene silencing Curr. Biol., 14 (2004),pp. 346-351
    [137] Voinnet, O. Origin, biogenesis, and activity of plant microRNAs Cell, 136 (2009),pp. 669-687
    [138] Wang, J.W., Czech, B., Weigel, D. Cell, 138 (2009),pp. 738-749
    [139] Wang, J.W., Schwab, R., Czech, B. et al. Plant Cell, 20 (2008),pp. 1231-1243
    [140] Wang, J.W., Wang, L.J., Mao, Y.B. et al. Plant Cell, 17 (2005),pp. 2204-2216
    [141] Wang, L., Song, X., Gu, L. et al. Plant Cell, 25 (2013),pp. 715-727
    [142] Wang, W., Ye, R., Xin, Y. et al. Plant Cell, 23 (2011),pp. 3565-3576
    [143] Williams, L., Grigg, S.P., Xie, M. et al. Development, 132 (2005),pp. 3657-3668
    [144] Willmann, M.R., Mehalick, A.J., Packer, R.L. et al. Plant Physiol., 155 (2011),pp. 1871-1884
    [145] Wu, F., Yu, L., Cao, W. et al. Plant Cell, 19 (2007),pp. 914-925
    [146] Wu, G., Park, M.Y., Conway, S.R. et al. Cell, 138 (2009),pp. 750-759
    [147] Wu, G., Poethig, R.S. Development, 133 (2006),pp. 3539-3547
    [148] Wu, L., Zhang, Q., Zhou, H. et al. Rice microRNA effector complexes and targets Plant Cell, 21 (2009),pp. 3421-3435
    [149] Wu, L., Zhou, H., Zhang, Q. et al. DNA methylation mediated by a microRNA pathway Mol. Cell, 38 (2010),pp. 465-475
    [150] Wu, M.F., Tian, Q., Reed, J.W. Development, 133 (2006),pp. 4211-4218
    [151] Wu, X., Shi, Y., Li, J. et al. Cell Res. (2013)
    [152] Xie, Z., Allen, E., Fahlgren, N. et al. Plant Physiol., 138 (2005),pp. 2145-2154
    [153] Xie, Z., Kasschau, K.D., Carrington, J.C. Curr. Biol., 13 (2003),pp. 784-789
    [154] Xu, J., Chua, N.H. Plant Cell, 21 (2009),pp. 3270-3279
    [155] Xu, J., Yang, J.Y., Niu, Q.W. et al. Plant Cell, 18 (2006),pp. 3386-3398
    [156] Yamasaki, H., Hayashi, M., Fukazawa, M. et al. Plant Cell, 21 (2009),pp. 347-361
    [157] Yan, J., Gu, Y., Jia, X. et al. Plant Cell, 24 (2012),pp. 415-427
    [158] Yang, L., Liu, Z., Lu, F. et al. Plant J., 47 (2006),pp. 841-850
    [159] Yang, L., Wu, G., Poethig, R.S. Proc. Natl. Acad. Sci. USA, 109 (2012),pp. 315-320
    [160] Yang, S.W., Chen, H.Y., Yang, J. et al. Structure, 18 (2010),pp. 594-605
    [161] Yu, B., Bi, L., Zheng, B. et al. Proc. Natl. Acad. Sci. USA, 105 (2008),pp. 10073-10078
    [162] Yu, B., Yang, Z., Li, J. et al. Methylation as a crucial step in plant microRNA biogenesis Science, 307 (2005),pp. 932-935
    [163] Yu, N., Cai, W.J., Wang, S. et al. Plant Cell, 22 (2010),pp. 2322-2335
    [164] Zhan, X., Wang, B., Li, H. et al. Proc. Natl. Acad. Sci. USA, 109 (2012),pp. 18198-18203
    [165] Zhang, Y., Cheng, Y.T., Bi, D. et al. Curr. Biol., 15 (2005),pp. 1936-1942
    [166] Zhao, L., Kim, Y., Dinh, T.T. et al. Plant J., 51 (2007),pp. 840-849
    [167] Zhao, Y., Yu, Y., Zhai, J. et al. Curr. Biol., 22 (2012),pp. 689-694
    [168] Zheng, B., Wang, Z., Li, S. et al. Genes Dev., 23 (2009),pp. 2850-2860
    [169] Zhong, R., Ye, Z.H. Plant Cell Physiol., 45 (2004),pp. 369-385
    [170] Zhu, H., Hu, F., Wang, R. et al. Cell, 145 (2011),pp. 242-256
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  • 收稿日期:  2013-01-27
  • 录用日期:  2013-04-02
  • 修回日期:  2013-03-15
  • 网络出版日期:  2013-04-15
  • 刊出日期:  2013-05-20

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