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Books in Advances in Genetics series

  • Darwin’s Pangenesis and Its Rediscovery Part A

    Dhavendra Kumar

    Hardcover (Academic Press, Aug. 10, 2018)
    Darwin’s Pangenesis and Its Rediscovery Part A highlights the findings of Darwin's Pangenesis, an expanded cell theory and unified theory of heredity and variation that strengthened his theory of evolution and explained many phenomena of life. Now, new advances and the discovery of circulating cell-free DNA, mobile RNAs, prions and extracellular vesicles are providing new breakthroughs, thus increasing evidence on the inheritance of acquired characters, graft hybridization, and many other phenomena that Pangenesis suggests. Sections of note in this volume include the rationale, criticisms, influence and recent molecular evidence of Darwin's Pangenesis, as well as its relation to the inheritance of acquired characters, which is often included under the blanket term "transgenerational epigenetic inheritance."
  • Darwin’s Pangenesis and Its Rediscovery Part B

    Dhavendra Kumar

    Hardcover (Academic Press, Sept. 7, 2018)
    Darwin’s Pangenesis and its Rediscovery Part B explores Darwin's Pangenesis, an expanded cell theory and unified theory of heredity and variation from over 150 years ago that strengthened his theory of evolution and explained many phenomena of life. Now, new discoveries on circulating DNA, mobile RNAs, prions and extracellular vesicles are providing striking evidence for the chemical existence of Darwin’s imaginary gemmules. In addition, new evidence for the inheritance of acquired characters, graft hybridization, and many other phenomena that Pangenesis supposedly explains are progressing, and are hence explored in this comprehensive volume. Specific chapters in this new volume include Darwin and Mendel: The Historical Connection, Darwin’s Pangenesis and Graft Hybridization, Darwin’s Pangenesis and Medical Genetics, Darwin’s Pangenesis and Certain Anomalous Phenomena, and Natural Selection and Pangenesis: The Darwinian Synthesis.
  • Nonviral Vectors for Gene Therapy: Physical Methods and Medical Translation

    Leaf Huang, Dexi Liu, Ernst Wagner

    Hardcover (Academic Press, Jan. 8, 2015)
    The field of genetics is rapidly evolving, and new medical breakthroughs are occurring as a result of advances in our knowledge of genetics. Advances in Genetics continually publishes important reviews of the broadest interest to geneticists and their colleagues in affiliated disciplines.
  • Nonviral Vectors for Gene Therapy: Lipid- and Polymer-based Gene Transfer

    Leaf Huang, Dexi Liu, Ernst Wagner

    Hardcover (Academic Press, Nov. 13, 2014)
    The field of genetics is rapidly evolving, and new medical breakthroughs are occurring as a result of advances in our knowledge of genetics. Advances in Genetics continually publishes important reviews of the broadest interest to geneticists and their colleagues in affiliated disciplines.
  • Advances in Genetics

    Dhavendra Kumar

    Hardcover (Academic Press, March 20, 2019)
    Advances in Genetics, Volume 103, provides the latest information on the rapidly evolving field of genetics, presenting new medical breakthroughs that are occurring as a result of advances in our knowledge of the topic. The book continually publishes important reviews of the broadest interest to geneticists and their colleagues in affiliated disciplines, critically analyzing future directions.
  • Advances in Genetics

    Jeffrey C. Hall, Jay C. Dunlap, Theodore Friedmann, Francesco Giannelli

    Hardcover (Academic Press, July 8, 1998)
    This volume of Advances in Genetics furthers the serial's goal of presenting topics of interest to both human and molecular geneticists. Topics of interest in this volume include:Expression patterns of regulatory genes and the role they play in developmentHereditary ataxias and specific disease states where the genetic defect has been identifiedMinute genes, their mutations, and their molecular function in DrosophilaThe genetics and molecular biology of rhythm mutants and clock moleculesDouble strand breaks in DNA and their repair mechanisms