Deferring Development

Deferring Development

Setting Aside Cells for Future Use in Development and Evolution

Bishop, Cory Douglas; Hall, Brian K.

Taylor & Francis Ltd

01/2020

292

Dura

Inglês

9781138334281

15 a 20 dias

730

Descrição não disponível.
Section I Deferred-use Cells and Niches. 1. Deferred-Use Cells in Development and Evolution A Life History Perspective. 2. Deferred-Use Molecules and Decision-Making in Development. 3. Coevolution of the Cell Cycle and Deferred-Use Cells. Section II Origin of Deferred-Use Cells and Their Niches: Phylogenetic Approaches. 4. The Early Evolution of Cellular Reprogramming in Animals. 5. Macroalgae as Underexploited Model Systems for Stem Cell Research. 6. Meristems, Stem Cells, and Stem Cell Niches in Vascular Land Plants. 7. Planarian Neoblasts: Nondeferred, Multipurpose Stem Cells for Body Homeostasis, Growth, Degrowth, and Regeneration. 8. Skeletal Muscle Satellite Cells: Adult Stem Cells with Multipotential Capacity. Section III Deferred-Use Cells in Development and Evolution. 9. Sustained Pluripotency Underwrites Extreme Developmental and Reproductive Plasticity. 10. The Coordination of Insect Imaginal Discs and the Regulation and Evolution of Complex Worker Caste Systems of Ants. 11. Evolution of Adaptive Immunity through Set-Aside Cells. 12. The Lack of Human Somatic Set-Aside Cells and Cancer Risks. 13. Microbes: New Actors in the Stem Cell Niche. 14. Stem Cells in a Holobiont: Lessons from Hydra. Subject Index. Systematic Index.
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Oogonial Stem Cells;Short G1 Phase;Stem Cells;Animal Kingdom;Echinoderm Developmental;Satellite Stem Cells;Evolution and Development;Germ Cells;Cell Cycle Progression;Developmental Mechanisms;Somatic Stem Cells;deferred-use cells;Stem Cell Niches;ISC Proliferation;ontogeny;Imaginal Discs;Vascular Plants;evolutionary cell biology;Pluripotent Stem Cells;Ecdysone Signaling;AC;Satellite Cells;Larval Developmental Time;Par Protein;Adult PSCs;Cell Fate Decisions;Lateral Root Cap;Ribbon Worms;Holometabolous Insects;Single Cell RNA Seq;PIWI Protein;Larval Development