By Jean-Claude Kader, Michel Delseny
Edited via Jean-Claude Kader and Michel Delseny and supported by way of a global Editorial Board, Advances in Botanical examine publishes in-depth and up to date reports on a variety of subject matters in plant sciences. at present in its fiftieth quantity, the sequence encompasses a wide variety of stories through well-known specialists on all points of plant genetics, biochemistry, cellphone biology, molecular biology, body structure and ecology. This eclectic quantity positive factors six studies on state-of-the-art subject matters of curiosity to postgraduates and researchers alike. * Multidisciplinary stories written from a extensive diversity of clinical views * For over 30 years, sequence has loved a name for excellence * members the world over well-known gurus of their respective fields
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Additional info for Advances in Botanical Research, Vol. 55
2009). Thus, both auxin maxima and minima appear to contribute to the activation of specific developmental programmes during fruit development. 32 ´ NDIZ ET AL. C. FERRA V. FLORAL MERISTEM TERMINATION IN THE CENTRAL ZONE OF THE ARABIDOPSIS GYNOECIUM At the time when carpel primordia are initiated, another essential process takes place in the centre of the Arabidopsis flower, in a domain that will later correspond to the base of the gynoecium. Stem cells in this domain, which had previously been maintained within the flower bud, and whose divisions had generated the different floral organs, cease to be maintained as the carpel primordial form.
2009; see Section V for further details). In early stage of development, SHP1 and SHP2 are widely expressed in the Arabidopsis gynoecium. , 1995). SHP genes seem to act downstream of AG and could therefore represent direct CARPEL DEVELOPMENT 21 AG-targets, though as demonstrated by ap2 ag mutants, these genes can also be activated by other factors. D for further details). Thus, both SHP and AG can be placed at the top of the carpel identity pathway, and could from this position directly or indirectly activate both SPT and CRC.
As a consequence, auxin is depleted and changes to gene expression occur in the cell layers surrounding the newly formed primordium, which creates a morphological boundary of distinct cell types with reduced cell division activity that separates the primordium from the rest of the meristem (Fig. , 2005), as reviewed by Aida and Tasaka (2006). , 2003). , 2007). , 2002). Recently, the BELL-type protein ARABIDOPSIS THALIANA HOMEOBOX GENE1 (ATH1) was also suggested to participate in boundary formation in a pathway parallel to that of the CUC proteins (GomezMena and Sablowski, 2008).
Advances in Botanical Research, Vol. 55 by Jean-Claude Kader, Michel Delseny
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