By Marja C.P. Timmermans (Eds.)
A subgroup of homeobox genes, which play a huge function within the developmental methods of quite a few multicellular organisms, Hox genes were proven to play a serious position in vertebrate development formation. Hox genes might be considered common function keep watch over genes-that is, they're comparable in lots of organisms and direct a similar approaches in a number of organisms, from mouse, to fly, to human. * offers researchers an summary and synthesis of the newest study findings and modern inspiration within the area.* Inclusion of chapters that debate the evolutionary improvement of a wide selection of organisms.* provides researchers and clinicians perception into how faulty Hox genes set off developmental abnormalities in embryos.
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Extra resources for Plant Development
And Heidstra, R. (2008). Who begets whom? Plant cell fate determination by asymmetric cell division. Curr. Opin. Plant Biol. 11, 34–41. Toonen, M. A. , and de Vries, S. C. (1996). Initiation of somatic embryos from single cells. In: Wang, T. , and Cuming, A. ), Embryogenesis: The Generation of a Plant. , Oxford, pp. 173–189. Treml, B. , and Ruiz, R. A. (2005). The gene ENHANCER OF PINOID controls cotyledon development in the Arabidopsis embryo. Development 132, 4063–4074. Tucker, M. , Tucker, E.
Evol. 24, 2474–2484. Nodine, M. , and Tax, F. E. (2007). RPK1 and TOAD2 are two receptorlike kinases redundantly required for Arabidopsis embryonic pattern formation. Dev. Cell 12, 943–956. , Bhalerao, R. , and Palme, K. (2003). Gravity-regulated differential auxin transport from columella to lateral root cap cells. Proc. Natl. Acad. Sci. A. 100, 2987–2991. , and Friml, J. (2009). Auxin transport routes in plant development. Development 136, 2675–2688. Petricka, J. , and Benfey, P. N. (2008). Root layers: complex regulation of developmental patterning.
R. (2004). Stomatal development and pattern controlled by a MAPKK kinase. Science 304, 1494–1497. , and Jürgens, G. (1993). The role of the monopteros gene in organising the basic body region of the Arabidopsis embryo. Development 118, 575–587. Bewley, J. , and Black, M. (1994). Seeds: Physiology of Development and Germination. Plenum, New York. , and Laux, T. (2008). Differential expression of WOX genes mediates apical-basal axis formation in the Arabidopsis embryo. Dev. Cell 14, 867–876. , and Pullman, G.
Plant Development by Marja C.P. Timmermans (Eds.)
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