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First published online August 19, 2005; 10.1104/pp.105.061788

Plant Physiology 139:275-286 (2005)
© 2005 American Society of Plant Biologists

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GENETICS, GENOMICS, AND MOLECULAR EVOLUTION

Dedifferentiation of Tobacco Cells Is Associated with Ribosomal RNA Gene Hypomethylation, Increased Transcription, and Chromatin Alterations1,[w]

Blazena Koukalova, Miloslava Fojtova, Kar Yoong Lim, Jaroslav Fulnecek, Andrew Rowland Leitch and Ales Kovarik*

Institute of Biophysics, Academy of Sciences of the Czech Republic, 612 65 Brno, Czech Republic (B.K., M.F., J.F., A.K.); and School of Biological Sciences, Queen Mary, University of London, London E1 4NS, United Kingdom (A.R.L., K.Y.L.)

Epigenetic changes accompanying plant cell dedifferentiation and differentiation are reported in 35S ribosomal DNA (rDNA) of tobacco (Nicotiana tabacum). There was a reduction of CG and CNG methylation in both intergenic and genic regions of the rDNA cistron in fully dedifferentiated callus and root compared to leaf. The rDNA hypomethylation was not random, but targeted to particular rDNA gene families at units that are clustered within the tandem array. The process of hypomethylation was initiated as early as 2 weeks after the callus induction and established epigenetic patterns were stably maintained throughout prolonged culture. However, regenerated plants and their progeny showed partial and complete remethylation of units, respectively. Nuclear run-on assays revealed a 2-fold increase of primary (unprocessed) ribosomal RNA transcripts in callus compared to leaf tissue. However, the abundance of mature transcripts in callus was elevated by only about 25%. Fluorescence in situ hybridization analysis of interphase nuclei showed high levels of rDNA chromatin condensation in both callus and leaf, with substantially less decondensed rDNA than is observed in meristematic root-tip cells. It is likely that the regions of the rDNA locus showing decondensation correspond to the clusters of hypomethylated units that occur in the tandem array at each locus. The data together indicate that the establishment of pluripotency and cell proliferation occurring with callus induction is associated with enhanced ribosomal RNA gene expression and overall rDNA hypomethylation, but is not associated with material-enhanced relaxation of chromatin structure (decondensation) at rDNA loci.


1 This work was supported by the Grant Agency of the Czech Republic, Academy of Sciences (grant nos. 521–01–0775 and A50040507 to A.K. and 204–03–P104 to J.F.) and the National Environmental Research Council (grant to A.R.L.).

[w] The online version of this article contains Web-only data.

Article, publication date, and citation information can be found at www.plantphysiol.org/cgi/doi/10.1104/pp.105.061788.

* Corresponding author; e-mail kovarik{at}ibp.cz; fax 420–541211293.

Received February 22, 2005; returned for revision May 31, 2005; accepted May 31, 2005.




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