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By Kantorovich Aharon

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Nucleic Acids Research 21, 2331–2338. De Ca´rcer, G. and Medina, F. J. (1999). Simultaneous localization of transcription and early processing markers allows dissection of functional domains in the plant cell nucleolus. Journal of Structural Biology 128, 139–151. , Cerdido, A. and Medina, F. J. (1997). NopA64, a novel nucleolar phosphoprotein from proliferating onion cells, sharing immunological determinants with mammalian nucleolin. Planta 201, 487–495. De la Torre, C. and Gime´nez‐Martı´n, G.

Nature Cell Biology 1, 82–87. , Verschure, P. , Rothblum, L. , Van Driel, R. and Fakan, S. (2000). Ultrastructural analysis of nucleolar THE PLANT NUCLEOLUS 37 transcription in cells microinjected with 5‐bromo‐UTP. Histochemistry and Cell Biology 113, 181–187. , Echeverrı´a, M. and Sa´ez‐Va´squez, J. (2008). Characterization of a ribonuclease III‐like protein required for cleavage of the pre‐rRNA in the 30 ETÆ in Arabidopsis. Nucleic Acids Research 36, 1163–1175. , Widmer, R. , Koller, T. and Sogo, J.

And Key, J. L. (1976). Purification and characterization of RNA polymerase I from a higher plant. Biochimica et Biophysica Acta 418, 344–357. , Logan, I. , Neal, D. E. and Robson, C. N. (2004). Putative involvement of the histone acetyltransferase Tip60 in ribosomal gene transcription. Nucleic Acids Research 32, 1654–1665. Hannan, R. D. and Rothblum, L. I. (1995). Regulation of ribosomal DNA transcription during neonatal cardiomyocyte hypertrophy.

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An Ideal Model for the Growth of Knowledge in Research Programs by Kantorovich Aharon


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