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By Jean-Claude Kader, Michel Delseny

Edited through Jean-Claude Kader and Michel Delseny and supported via a world Editorial Board, Advances in Botanical examine publishes in-depth and up to date studies on a variety of themes in plant sciences. presently in its fiftieth quantity, the sequence encompasses a wide variety of studies by means of well-known specialists on all elements of plant genetics, biochemistry, telephone biology, molecular biology, body structure and ecology. This eclectic quantity positive aspects six stories on state-of-the-art themes of curiosity to postgraduates and researchers alike. * Multidisciplinary stories written from a wide diversity of clinical views * For over 30 years, sequence has loved a name for excellence * members across the world famous specialists of their respective fields

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1996). , 2005). , 2005). , 2007) but also cytokinin responsiveness is high in the central part in the meristem, and at least two members of the WOX family, WUS and STIMPY/WOX9, appear to stimulate cytokinin signalling in the SAM (Fig. , 2010). , 2007). , 2002). Lateral organ initiation in the PZ of the SAM requires the silencing of programmes that repress differentiation, such as the KNOX programme, and it has been suggested that the plant hormone auxin plays a major role in this process. , 2000, 2003).

2008). Distal B A Differentiation Low auxin Low PIN High CUC High KNOX Boundary High JLO/LOB ET T/A ta RF -s 4 iR NA BY miR165/6 II P0 CUC CK Lateral N WOX ZIPI HD- BOP KNOX Medial KA AS P1 Cell cycle arrest YA B Auxin AS Auxin GA CK ad KNOX ab SPL BOP JAG AS2/LOB KNOX Growth Proximal Fig. 2. Genetic networks controlling plant lateral organ development. (A) Interactions between hormones, transcription factors, and RNAs for lateral organ initiation, boundary formation, and establishment of adaxial–abaxial polarity in the leaf.

NUB, unlike JAG, which is expressed in a non-polar manner in all lateral organs, is expressed only in the adaxial zones of leaves, stamens and carpels. Single nub mutants do not present any obvious phenotype, but in the double jag nub mutant, floral organ growth is affected and carpels and stamens are abaxialised. , 1999). These genes are largely redundant in their abaxial activity, as single mutants of most of them only show a very weak adaxialisation phenotype. However, the combination of mutants can lead to severe polarity defects in which the ´ NDIZ ET AL.

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