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|a 1155561006
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|a 572.8/65
|2 23
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|a Gene regulatory networks (GRNS) /
|c edited by Isabelle S. Peter.
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|a Cambridge, MA :
|b Academic Press,
|c 2020.
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|a 1 online resource
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|a text
|b txt
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|a Current topics in developmental biology ;
|v v. 139
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|a References-Chapter Two: Early Xenopus gene regulatory programs, chromatin states, and the role of maternal transcription factors-1. Introduction-2. Roles of maternal TFs during germ layer specification-2.1. Localization of maternal gene products-2.2. Endodermally enriched TFs-2.2.1. Vegt-2.2.2. Otx1-2.2.3. Sox7-2.3. Ectodermally enriched TFs-2.3.1. Foxi2-2.3.2. Grh11-2.4. Ubiquitously expressed TFs-2.4.1. Foxh1-2.4.2. Sox3-2.4.3. Pou5f3-2.5. Intracellular mediators of signaling pathways-2.5.1. Gdf1/Nodal/Smad2,3
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|a Intro -- Gene Regulatory Networks -- Copyright -- Contents -- Contributors -- Preface -- Chapter One: A gene regulatory network for cell fate specification in Ciona embryos -- 1. Introduction -- 2. Basic properties for the gene regulatory network in early ascidian embryos -- 2.1. Regulatory genes -- 2.2. Initial conditions for the gene regulatory network -- 2.3. Outputs of the gene regulatory network -- 2.4. Potentially unique properties of the gene regulatory network in early ascidian embryos -- 3. The gene regulatory network accounts for changes of gene expression in space and time
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|a 3.1. The initial set up in the 16-cell embryo by maternal factors -- 3.2. Specific gene expression in the 32-cell embryo -- 3.3. Specific gene expression at the 64-cell stage and thereafter -- 3.3.1. Specification of endodermal fate -- 3.3.2. Fate specification of mesenchymal cells -- 3.3.3. Fate specification of muscle cells and adult heart precursors -- 3.3.4. Fate specification of the notochord and the posterior neural plate -- 3.3.5. Epidermal cells -- 3.3.6. Cells for the lateral neural plate and its border -- 3.3.7. Cells for the anterior neural plate and its border -- 4. Perspectives
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|a 3. ``Pre-patterning��: Polarizing the limb bud axes upstream of morphogenetic SHH signaling -- 4. Establishment of AER-FGF signaling is linked dorso-ventral and proximo-distal axis patterning -- 5. The self-regulatory limb bud signaling system coordinately controls antero-posterior and proximo-distal axis patternin ... -- 6. Propagation and termination of the self-regulatory limb bud signaling system -- 7. A Turing-type mechanism controls the definitive periodic pattern of digit rays -- 8. Brief outlook -- Acknowledgments -- References
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|a Gene regulatory networks.
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|a Gene Regulatory Networks
|0 (DNLM)D053263
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|a R�eseaux de r�egulation g�enique.
|0 (CaQQLa)000287672
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|a Gene regulatory networks
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|0 (OCoLC)fst01893891
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|a Peter, Isabelle S.
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|i Print version:
|z 0128131802
|z 9780128131800
|w (OCoLC)1127115742
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|a Current topics in developmental biology ;
|v v. 139.
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|u https://sciencedirect.uam.elogim.com/science/bookseries/00702153/139
|z Texto completo
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