Vertebrate Embryology
Author | : Arthur Milnes Marshall |
Publisher | : |
Total Pages | : 672 |
Release | : 1893 |
Genre | : Embryology |
ISBN | : |
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Author | : Arthur Milnes Marshall |
Publisher | : |
Total Pages | : 672 |
Release | : 1893 |
Genre | : Embryology |
ISBN | : |
Author | : Richard Marshall Eakin |
Publisher | : Univ of California Press |
Total Pages | : 284 |
Release | : 1964 |
Genre | : Science |
ISBN | : 9780520003699 |
Author | : Olin Everett Nelsen |
Publisher | : |
Total Pages | : 1016 |
Release | : 1953 |
Genre | : Comparative embryology |
ISBN | : |
Author | : Dennis Bray |
Publisher | : Garland Science |
Total Pages | : 396 |
Release | : 2001 |
Genre | : Cells |
ISBN | : 9780815332824 |
This book vividly describes how complex and integrated movements can arise from the properties and behaviors of biological molecules. It provides a uniquely integrated account in which the latest findings from biophysics and molecular biology are put into the context of living cells. This second edition is updated throughout with recent advances in the field and has a completely revised and redrawn art program. The text is suitable for advanced undergraduates, graduate students, and for professionals wishing for an overview of this field.
Author | : Florence Louise Marlow |
Publisher | : Morgan & Claypool Publishers |
Total Pages | : 221 |
Release | : 2010 |
Genre | : Family & Relationships |
ISBN | : 161504051X |
Eggs of all animals contain mRNAs and proteins that are supplied to or deposited in the egg as it develops during oogenesis. These maternal gene products regulate all aspects of oocyte development, and an embryo fully relies on these maternal gene products for all aspects of its early development, including fertilization, transitions between meiotic and mitotic cell cycles, and activation of its own genome. Given the diverse processes required to produce a developmentally competent egg and embryo, it is not surprising that maternal gene products are not only essential for normal embryonic development but also for fertility. This review provides an overview of fundamental aspects of oocyte and early embryonic development and the interference and genetic approaches that have provided access to maternally regulated aspects of vertebrate development. Some of the pathways and molecules highlighted in this review, in particular, Bmps, Wnts, small GTPases, cytoskeletal components, and cell cycle regulators, are well known and are essential regulators of multiple aspects of animal development, including oogenesis, early embryogenesis, organogenesis, and reproductive fitness of the adult animal. Specific examples of developmental processes under maternal control and the essential proteins will be explored in each chapter, and where known conserved aspects or divergent roles for these maternal regulators of early vertebrate development will be discussed throughout this review. Table of Contents: Introduction / Oogenesis: From Germline Stem Cells to Germline Cysts / Oocyte Polarity and the Embryonic Axes: The Balbiani Body, an Ancient Oocyte Asymmetry / Preparing Developmentally Competent Eggs / Egg Activation / Blocking Polyspermy / Cleavage/ Mitosis: Going Multicellular / Maternal-Zygotic Transition / Reprogramming: Epigenetic Modifications and Zygotic Genome Activation / Dorsal-Ventral Axis Formation before Zygotic Genome Activation in Zebrafish and Frogs / Maternal TGF-β and the Dorsal-Ventral Embryonic Axis / Maternal Control After Zygotic Genome Activation / Compensation by Stable Maternal Proteins / Maternal Contributions to Germline Establishment or Maintenance / Perspective / Acknowledgments / References
Author | : Paul T. Sharpe |
Publisher | : Springer Science & Business Media |
Total Pages | : 752 |
Release | : 2008-02-02 |
Genre | : Science |
ISBN | : 1592592708 |
Most people have some interest in embryos; this probably results, in part, from their interest in understanding the biological origins of themselves and their offspring and, increasingly, concerns about how environmental change such as pollution might affect human development. Obviously, et- cal considerations preclude experimental studies of human embryos and, c- sequently, the developmental biologist has turned to other species to examine this process. Fortunately, the most significant conclusion to be drawn from the experimental embryology of the last two decades is the manner in which orthologous or closely related molecules are deployed to mediate similar - velopmental processes in both vertebrates and invertebrates. The molecular mechanisms regulating processes fundamental to most animals, such as axial patterning or axon guidance, are frequently conserved during evolution. (It is now widely believed that the differences between phyla and classes are the result of new genes, arising mostly by duplication and divergence of extant sequences, regulating the appearance of derived characters. ) Other vertebrates are obviously most likely to use the same devel- mental mechanisms as humans and, within the vertebrate subphylum, the - parent degree of conservation of developmental mechanism is considerable. It has long been recognized that particular vertebrate species offer either d- tinct advantages in investigating particular stages of development or are - pecially amenable to particular manipulations. No single animal can provide all the answers because not all types of experiments can be carried out on a single species.
Author | : Nick Hopwood |
Publisher | : University of Chicago Press |
Total Pages | : 397 |
Release | : 2015-05-11 |
Genre | : Art |
ISBN | : 022604694X |
Emphasizing the changes worked by circulation and copying, interpretation and debate, this book uses the case to explore how pictures succeed and fail, gain acceptance and spark controversy. It reveals how embryonic development was made a process that we can see, compare, and discuss, and how copying - usually dismissed as unoriginal
Author | : Ray Leighton Watterson |
Publisher | : |
Total Pages | : 142 |
Release | : 1955 |
Genre | : Birds |
ISBN | : |
Author | : Richard M. Eakin |
Publisher | : Univ of California Press |
Total Pages | : 288 |
Release | : 1978-03-14 |
Genre | : Science |
ISBN | : 9780520035935 |
The real Hans Spemann, German embryologist (1869-1941), developed a concept of embryonic induction through his experiments on early amphibian embryos which demonstrated neural induction by the primary organizer and evocation of the lens by the optic vesicle. For his discovery of the “organizer” he was awarded the Nobel Peace in Physiology and Medicine in 1935, while he was Professor of Zoology at Freiburg, Germany. In the twenties and early thirties Spemann's laboratory was a mecca for students and investigators entering the new field of experimental embryology.