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Xenopus Development
Malgorzata Kloc (Author), Jacek Z. Kubiak (Author)
9781118492819, Wiley
Hardback, published 23 May 2014
424 pages
26.2 x 18.5 x 2.6 cm, 1.161 kg
Frogs from the genus Xenopus have long been used as model organisms in basic and biomedical research. These frogs have helped unlock key fundamental developmental and cellular processes that have led to important scientific breakthroughs and have had practical application in embryology, cancer research and regenerative medicine. Xenopus Development is a vital resource on the biology and development of these key model organisms, and will be a great tool to researchers using these frogs in various disciplines of biological science. Xenopus Development is divided into four sections, the first three highlight key processes in Xenopus development from embryo to metamophosis. These sections focus on the cellular processes, organogenesis and embryo development. The final section highlights novel techniques and approaches being used in Xenopus research. Providing thorough and detailed coverage, Xenopus Development, will be a timely and welcome volume for those working in cell and molecular biology, genetics, developmental biology and biomedical research.
Contributors vii Preface ix Section I Oocyte and Early Embryo 1 1 Transcription in the Xenopus Oocyte Nucleus 3 2 RNA Localization during Oogenesis in Xenopus laevis 16 3 From Oocyte to Fertilizable Egg: Regulated mRNA Translation and the Control of Maternal Gene Expression 38 4 Polarity of Xenopus Oocytes and Early Embryos 60 5 Germ-Cell Specification in Xenopus 75 Section II Midblastula Transition, Gastrulation, and Neurulation 101 6 The Xenopus Embryo as a Model System to Study Asymmetric Furrowing in Vertebrate Epithelial Cells 103 7 Induction and Differentiation of the Xenopus Ciliated Embryonic Epidermis 112 8 Wnt Signaling during Early Xenopus Development 130 9 Neural Tube Closure in Xenopus 163 Section III Metamorphosis and Organogenesis 187 10 Primordial Germ Cell Migration 189 11 Development of Gonads, Sex Determination, and Sex Reversal in Xenopus 199 12 The Xenopus Pronephros: A Kidney Model Making Leaps toward Understanding Tubule Development 215 13 Development of Neural Tissues in Xenopus laevis 239 14 The Development of the Immune System in Xenopus 264 15 Neural Regeneration in Xenopus Tadpoles during Metamorphosis 293 Section IV Novel Techniques and Approaches 309 16 Atomic Force Microscopy Imaging of Xenopus laevis Oocyte Plasma Membrane 311 17 Size Scaling of Subcellular Organelles and Structures in Xenopus laevis and Xenopus tropicalis 325 18 A Model for Retinal Regeneration in Xenopus 346 19 The Xenopus Model for Regeneration Research 368 20 Genomics and Genome Engineering in Xenopus 383 Index 403
Joseph G. Gall
James O. Deshler
Chad E. Cragle & Angus M. MacNicol
Malgorzata Kloc
Mary Lou King
Jacek Z. Kubiak, Isabelle Chartrain, & Jean-Pierre Tassan
Marie Cibois, Pierluigi Scerbo, Virginie Thomé, Andrea Pasini, & Laurent Kodjabachian
François Fagotto
Hitoshi Morita, Makoto Suzuki, & Naoto Ueno
Aliaksandr Dzementsei & Tomas Pieler
Rafa³ P. Piprek & Jacek Z. Kubiak
Rachel K. Miller, Moonsup Lee, & Pierre D. McCrea
William A. Muñoz, Amy K. Sater, & Pierre D. McCrea
Louis Du Pasquier
Mauricio Moreno, Karina Tapia, & Juan Larrain
Francesco Orsini
Lisa J. Edens & Daniel L. Levy
Masasuke Araki
Ying Chen & Gufa Lin
Léna Vouillot, Aurore Thélie, Thibault Scalvenzi, & Nicolas Pollet
Subject Areas: Biology, life sciences [PS]
