By François-Yves Bouget, Mickael Moulager, Florence Corellou (auth.), Desh Pal S. Verma, Zonglie Hong (eds.)
The molecular mechanisms controlling mobile cycle development are hugely conserved in eukaryotes. as well as the elemental protein equipment taken with cellphone cycle law, larger vegetation have additionally developed distinct molecular mechanisms that let integration of environmental, physiological, and developmental indications into networks to manage right mobile department and growth. swift and intriguing examine growth in those fields has been accomplished from experimental observations on crops over the last decade. The scope of this quantity is concentrated at the molecular foundation of all features of mobilephone department and cytokinesis in crops. it really is a necessary reference e-book for teachers and scientists operating within the components of molecular, telephone, and developmental biology of crops. The editors of this e-book are veterans within the box of plant molecular biology and hugely revered worldwide.
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Extra resources for Cell Division Control in Plants
Since elements under tension with mobile attachment points will tend to adopt the shortest path across the cell, tension could provide a simple explanation for alignment of the division plane with the cell’s short axis. Tension could also explain avoidance of four-way junctions. As a new cell wall ages and strengthens, it creates an inward-protruding vertex in its own cell ﬁle and a corresponding outward-protruding vertex in the neighboring ﬁles (Fig. 2b). Thus, cytoskeletal elements may simply avoid these vertexes because attaching at a vertex would mean spanning a longer distance (Flanders et al.
This view, in which the oscillations of CDK/cyclin activity are considered to be at the nexus of cell cycle control, with periodic bursts of proteolytic activity and transcription factor activity acting as enforcers of cell cycle phase tran- Transcriptional Control of the Plant Cell Cycle 29 sitions, or as executors of phase-speciﬁc waves of gene expression, does not sufﬁciently account for the regulatory interactions observed in cells or the interdependence of these processes. In contrast, our current knowledge is much more consistent with the view that these processes comprise closed regulatory cycles that are interlocked and coupled with each other through numerous regulatory interactions.
FEBS Lett 426:29–32 Lendvai A, Nikovics K, Bako’ L, Dudits D, Gyorgyey J (2002) Synchronization of Oryza sativa L. cv Taipei-309 cell suspension culture. Acta Biol Szeged 46:39–41 Transcriptional Control of the Plant Cell Cycle 31 Li C, Potuschak T, Colon-Carmona A, Gutierrez RA, Doerner P (2005) Arabidopsis TCP20 links regulation of growth and cell division control pathways. Proc Natl Acad Sci USA 102:12978–12983 Li F, Long T, Lu Y, Ouyang Q, Tang C (2004) The yeast cell-cycle network is robustly designed.
Cell Division Control in Plants by François-Yves Bouget, Mickael Moulager, Florence Corellou (auth.), Desh Pal S. Verma, Zonglie Hong (eds.)