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Fletcher, J.C.1
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Control of cell proliferation in Arabidopsis thaliana by microRNA mir396
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Rodriguez R.E., Mecchia M.A., Debernardi J.M., Schommer C., Weigel D., Palatnik J.F. Control of cell proliferation in Arabidopsis thaliana by microRNA mir396. Development 2010, 137:103-112. (Reported that miR396 functions in cell proliferation).
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Doerner, P.1
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(A review for stem cell regulation)
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Regulation of Arabidopsis shoot apical meristem and lateral organ formation by microRNA miR166g and its AtHD-ZIP target genes
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(The function of miR166 in SAM)
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Williams L., Grigg S.P., Xie M., Christensen S., Fletcher J.C. Regulation of Arabidopsis shoot apical meristem and lateral organ formation by microRNA miR166g and its AtHD-ZIP target genes. Development 2005, 132:3657-3668. (The function of miR166 in SAM).
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Williams, L.1
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Mutations in the microRNA complementarity site of the INCURVATA4 gene perturb meristem function and adaxialize lateral organs in Arabidopsis
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(The function of miR166 in SAM)
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Ochando I., Jover-Gil S., Ripoll J.J., Candela H., Vera A., Ponce M.R., Martinez-Laborda A., Micol J.L. Mutations in the microRNA complementarity site of the INCURVATA4 gene perturb meristem function and adaxialize lateral organs in Arabidopsis. Plant Physiol. 2006, 141:607-619. (The function of miR166 in SAM).
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Ochando, I.1
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Martinez-Laborda, A.7
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MicroRNA-directed cleavage of Nicotiana sylvestris PHAVOLUTA mRNA regulates the vascular cambium and structure of apical meristems
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(The function of miR166 in SAM)
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McHale N.A., Koning R.E. MicroRNA-directed cleavage of Nicotiana sylvestris PHAVOLUTA mRNA regulates the vascular cambium and structure of apical meristems. Plant Cell 2004, 16:1730-1740. (The function of miR166 in SAM).
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McHale, N.A.1
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Overexpression of miR165 affects apical meristem formation organ polarity establishment and vascular development in Arabidopsis
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(The effect of miR165 on meristem)
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Zhou G.K., Kubo M., Zhong R., Demura T., Ye Z.H. Overexpression of miR165 affects apical meristem formation organ polarity establishment and vascular development in Arabidopsis. Plant Cell Physiol. 2007, 48:391-404. (The effect of miR165 on meristem).
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78449244946
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L.O.S.T. meristems genes regulate cell differentiation of central zone descendants in Arabidopsis shoot meristems
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(Reported that a gene functions in SAM)
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Schulze S., Schafer B.N., Parizotto E.A., Voinnet O., Theres K. L.O.S.T. meristems genes regulate cell differentiation of central zone descendants in Arabidopsis shoot meristems. Plant J. 2000, 64:668-678. (Reported that a gene functions in SAM).
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Schulze, S.1
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Theres, K.5
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12
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33845755314
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Arabidopsis CUP-SHAPED COTYLEDON3 regulates postembryonic shoot meristem and organ boundary formation
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(Reported that CUC3 regulates meristem development)
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Hibara K., Karim M.R., Takada S., Taoka K., Furutani M., Aida M., Tasaka M. Arabidopsis CUP-SHAPED COTYLEDON3 regulates postembryonic shoot meristem and organ boundary formation. Plant Cell 2006, 18:2946-2957. (Reported that CUC3 regulates meristem development).
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Hibara, K.1
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Aida, M.6
Tasaka, M.7
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Interplay of miR164 CUP-SHAPED COTYLEDON genes and lateral suppressor controls axillary meristem formation in Arabidopsis thaliana
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Raman S., Greb T., Peaucelle A., Blein T., Laufs P., Theres K. Interplay of miR164 CUP-SHAPED COTYLEDON genes and lateral suppressor controls axillary meristem formation in Arabidopsis thaliana. Plant J. 2008, 55:65-76. (The function of miR164 in axillary meristem formation).
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14
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MicroRNA regulation of the CUC genes is required for boundary size control Arabidopsis meristems
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(The functions of miR164 and CUC genes in SAM)
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Laufs P., Peaucelle A., Morin H., Traas J. MicroRNA regulation of the CUC genes is required for boundary size control Arabidopsis meristems. Development 2004, 131:4311-4322. (The functions of miR164 and CUC genes in SAM).
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Laufs, P.1
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2942697259
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MicroRNA regulation of NAC-domain targets is required for proper formation and separation of adjacent embryonic, vegetative, and floral organs
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(The function of miR164 in plant development)
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Mallory A.C., Dugas D.V., Bartel D.P., Bartel B. MicroRNA regulation of NAC-domain targets is required for proper formation and separation of adjacent embryonic, vegetative, and floral organs. Curr. Biol. 2004, 14:1035-1046. (The function of miR164 in plant development).
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16
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77951239484
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The maize SBP-box transcription factor encoded by tasselsheath4 regulates bract development and the establishment of meristem boundaries
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(Reported that miR156 regulates meristem maintenance)
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Chuck G., Whipple C., Jackson D., Hake S. The maize SBP-box transcription factor encoded by tasselsheath4 regulates bract development and the establishment of meristem boundaries. Development 2009, 137:1243-1250. (Reported that miR156 regulates meristem maintenance).
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Chuck, G.1
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The flowering of Arabidopsis flower development
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(A review for flower development)
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Chen, X.1
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MiR172 regulates stem cell fate and defines the inner boundary of APETALA3 and PISTILLATA expression domain in Arabidopsis floral meristems
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(Reported that miR172 regulates stem cell fate)
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Zhao L., Kim Y., Dinh T.T., Chen X. MiR172 regulates stem cell fate and defines the inner boundary of APETALA3 and PISTILLATA expression domain in Arabidopsis floral meristems. Plant J. 2007, 51:840-849. (Reported that miR172 regulates stem cell fate).
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36549014611
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The maize tasselseed4 microrna controls sex determination and meristem cell fate by targeting tasselseed6 indeterminate spikelet1
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(Reported that miR172 functions in stem cell control in maize)
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Chuck G., Meeley R., Irish E., Sakai H., Hake S. The maize tasselseed4 microrna controls sex determination and meristem cell fate by targeting tasselseed6 indeterminate spikelet1. Nat. Genet. 2007, 39:1517-1521. (Reported that miR172 functions in stem cell control in maize).
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Control of root cap formation by MicroRNA-targeted auxin response factors in Arabidopsis
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Wang J.W., Wang L.J., Mao Y.B., Cai W.J., Xue H.W., Chen X.Y. Control of root cap formation by MicroRNA-targeted auxin response factors in Arabidopsis. Plant Cell 2005, 17:2204-2216. (The function of miR160 in root cap formation).
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Chen, X.Y.6
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MicroRNA profiling of human-induced pluripotent stem cells
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(Reported that several members of the miRNA cluster encoded on chromosome19, as more highly expressed in hESCs compared with iPS cells)
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Wilson K.D., Venkatasubrahmanyam S., Jia F., Sun N., Butte A.J., Wu J.C. MicroRNA profiling of human-induced pluripotent stem cells. Stem Cells Dev. 2009, 18:749-758. (Reported that several members of the miRNA cluster encoded on chromosome19, as more highly expressed in hESCs compared with iPS cells).
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Rice embryogenic calli express a unique set of microRNAs suggesting regulatory roles of microRNAs in plant post-embryogenic development
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Luo Y.C., Zhou H., Li Y., Chen J.Y., Yang J.H., Chen Y.Q., Qu L.H. Rice embryogenic calli express a unique set of microRNAs suggesting regulatory roles of microRNAs in plant post-embryogenic development. FEBS Lett. 2006, 580:5111-5116. (Reported that miR397 is specifically expressed in rice calli).
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Genome - wide discovery and analysis of microRNAs and other small RNAs from rice embryogenic callus
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A diverse set of microRNAs and microRNA-like small RNAs in developing rice grains
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