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Titlebook: Organogenetic Gene Networks; Genetic Control of O James Castelli-Gair Hombría,Paola Bovolenta Book 2016 Springer International Publishing S

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Genetic Control of Salivary Gland Tubulogenesis in ,, coordinated with the onset and control of morphogenetic events shaping that organ. In many cases, though, only the gene regulatory events that specify organ positioning and identity have been elucidated in much detail, whereas knowledge is scarce about the upstream regulation that controls effector
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Organogenesis of the , Respiratory System, and cellular mechanisms of tubular organogenesis. Genetic and molecular analyses of tracheal development have implicated an organogenetic network composed of over two hundred genes, several of which function in highly conserved cell signaling pathways. Tracheal construction incorporates the assembl
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Organogenesis of the Zebrafish Kidney,ne regulatory networks governing nephron formation during embryonic development are poorly understood and are challenging to study in complex kidney types such as the mammalian adult (metanephric) kidney. By contrast, the zebrafish embryonic (pronephric) kidney offers a number of advantages includin
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Morphogenetic Mechanisms of Inner Ear Development,tions as the organ responsible for the senses of hearing and balance: it detects the direction and speed of head rotation and the wide range of sound wave frequencies. During embryonic development, specialized cells (hair cells) originate in distinct domains of the inner ear, the sensory patches, wh
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Vertebrate Eye Evolution,ns in the evo-devo field (Davidson in The regulatory genome: gene regulatory networks in development and evolution. Academic Press, Amsterdam, .; Carroll in Cell 134(1):25–36, .). In this chapter we discuss the origin of the vertebrate eye from a common ancestor and its gene regulatory network (GRN)
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Control of Organogenesis by Hox Genes,y. Hox genes are stably expressed during development in partially overlapping antero-posterior domains of the body where they impose their morphological characteristics. This is achieved in two main ways: first, Hox proteins are capable of activating (or repressing) the expression of gene networks r
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https://doi.org/10.1007/978-3-319-42767-6Developmental Biology; Gene Networks; Organogenesis; Cell Behaviour; Evo-Devo
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