By Jean-Claude Kader, Michel Delseny
Edited by means of 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 experiences on quite a lot of subject matters in plant sciences. at the moment in its fiftieth quantity, the sequence contains a wide selection of studies via well-known specialists on all elements of plant genetics, biochemistry, telephone biology, molecular biology, body structure and ecology. This eclectic quantity good points six reports on state of the art themes of curiosity to postgraduates and researchers alike. * Multidisciplinary reports written from a large variety of clinical views * For over 30 years, sequence has loved a name for excellence * individuals across the world famous gurus of their respective fields
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Additional resources for Advances in Botanical Research, Vol. 55
B) Scheme of the Arabidopsis gynoecium in transverse section, indicating genetic pathways that direct medio-lateral patterning. Meristem-associated genes STM, RPL and BP are expressed in the medial region at the replum (blue), antagonistically to the valve-expressed AS, YAB, KAN and HD-ZIPIII genes (green). Boundary genes KNAT2 and KNAT6 are expressed at the valve margins (pink), where dehiscence zone genes SHP and IND also become activated. Auxin maxima occur in the replum, while auxin mimima occur at the valve margins.
6. Genetic networks directing marginal tissue differentiation at the apex of the Arabidopsis gynoecium. Black arrows indicate experimentally supported interactions, while grey arrows indicate possible interactions. Boxes indicate putative protein complexes. CARPEL DEVELOPMENT 27 Among these genes, ANT, LEUNIG (LUG), SEUSS (SEU) and FIL are the major players in the development of carpel marginal tissues. Whereas the single mutants corresponding to these genes display relatively mild effects on the medial gynoecial domain, the gynoecium of double mutant combinations almost completely lack marginal tissues.
2005) proposed a model in which the cooperative activity of FIL, YAB3 and JAG would activate the transcription of FUL and SHP genes in the valves and valve margins, respectively. According to this model, a high level of FIL/YAB/JAG activity would turn on FUL expression in the valves, while the activation of SHP in the valve margins would require a weaker activity of this same module. This model fits nicely with the observed phenotypes, but whether the activation of FUL and SHP lies in differences in YAB/JAG levels in different domains or in some other type of molecular interaction remains to be seen.
Advances in Botanical Research, Vol. 55 by Jean-Claude Kader, Michel Delseny