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By Jean-Claude Kader and Michel Delseny (Eds.)

Edited via Jean-Claude Kader and Michel Delseny and supported via a world Editorial Board, Advances in Botanical examine publishes in-depth and updated reports on quite a lot of issues in plant sciences. at present in its 53rd quantity, the sequence encompasses a wide variety of reports through well-known specialists on all points of plant genetics, biochemistry, mobilephone biology, molecular biology, body structure and ecology. This eclectic quantity features reviews on state-of-the-art issues of curiosity to postgraduates and researchers alike. * Multidisciplinary studies written from a large variety of clinical views * For over forty years, sequence has loved a name for excellence * individuals the world over famous specialists of their respective fields

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2005. Distinct regulation of histone H3 methylation at lysines 27 and 9 by CpG methylation in Arabidopsis. EMBO J. 24 (15), 2783–2791. , 2002. Histone methyltransferase activity of a Drosophila Polycomb group repressor complex. Cell 111 (2), 197–208. , 2005. Pivotal role of AtSUVH2 in heterochromatic histone methylation and gene silencing in Arabidopsis. EMBO J. 24 (7), 1418–1429. , Hall, T. , 2007. Plant SET domain-containing proteins: structure, function and regulation. Biochim. Biophys. Acta 1769 (5-6), 316–329.

Mol. Biol. Evol. 24 (2), 482–497. , 2009. Evolution and pleiotropy of TRITHORAX function in Arabidopsis. Int. J. Dev. Biol. 53 (2-3), 371–381. , 2009. Epigenetic programming via histone methylation at WRKY53 controls leaf senescence in Arabidopsis thaliana. Plant J. 58 (20), 333–346. , 2007. Chromatin modification and remodeling during early seed development. Curr. Opin. Genet. Dev. 17 (6), 473–479. , 2001. The Arabidopsis thaliana genome contains at least 29 active genes encoding SET domain proteins that can be assigned to four evolutionarily conserved classes.

Canephora and C. arabica) were compared to those of the parents and were found to be maternally inherited. , 1988). , 1996). The development of PCR-based markers, such as RAPDs, allowed researchers to get around the problem of the amount of DNA and, despite the low RAPD reproducibility often reported in the literature, these markers are still used today to assess the genetic diversity within C. , 2003) and also in C. , 2009). The development of AFLPs by Vos et al. (1995) enabled numerous reproducible and informative dominant markers to be obtained in only a few experiments even if reproducibility between laboratories was not ideal.

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