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The evolution of replication

Biological Theory 2 (1):10-22 (2007)

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  1. The Selfish Gene. [REVIEW]Gunther S. Stent & Richard Dawkins - 1977 - Hastings Center Report 7 (6):33.
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  • Getting from an RNA world to modern cells just got a little easier.Anthony M. Poole - 2006 - Bioessays 28 (2):105-108.
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  • Origins and the EcoEvoDevo Problem.Marion Blute - 2006 - Biological Theory 1 (2):116-118.
  • A general account of selection: Biology, immunology, and behavior.David L. Hull, Rodney E. Langman & Sigrid S. Glenn - 2001 - Behavioral and Brain Sciences 24 (3):511-528.
    Authors frequently refer to gene-based selection in biological evolution, the reaction of the immune system to antigens, and operant learning as exemplifying selection processes in the same sense of this term. However, as obvious as this claim may seem on the surface, setting out an account of “selection” that is general enough to incorporate all three of these processes without becoming so general as to be vacuous is far from easy. In this target article, we set out such a general (...)
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  • At last: Serious consideration.David L. Hull, Rodney E. Langman & Sigrid S. Glenn - 2001 - Behavioral and Brain Sciences 24 (3):559-569.
    For a long time, several natural phenomena have been considered unproblematically selection processes in the same sense of “selection.” In our target article we dealt with three of these phenomena: gene-based selection in biological evolution, the reaction of the immune system to antigens, and operant learning. We characterize selection in terms of three processes (variation, replication, and environmental interaction) resulting in the evolution of lineages via differential replication. Our commentators were largely supportive with respect to variation and environmental interaction but (...)
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  • Evolutionary Flatland: Evolution in Four Dimensions: Genetic, Epigenetic, Behavioral, and Symbolic Variation in the History of Life Eva Jablonka and Marion J. Lamb Cambridge, MA: MIT Press, 2005 (472 pp; $34.95 hbk; ISBN 0-262-10107-6). [REVIEW]Root Gorelick - 2006 - Biological Theory 1 (2):203-205.
  • Evolutionary Flatland.Root Gorelick - 2006 - Biological Theory 1 (2):203-205.
  • If the Genome isn’t a God-like Ghost in the Machine, Then What is it?M. Blute - 2005 - Biology and Philosophy 20 (2-3):401-407.
    Implicit God-like and ghost-in-the-machine metaphors underlie much current thinking about genomes. Although many criticisms of such views exist, none have succeeded in substituting a different, widely accepted view. Viewing the genome with its protein packaging as a brain gets rid of Gods and ghosts while plausibly integrating machine and information-based views. While the ‘wetware’ of brains and genomes are very different, many fundamental principles of how they function are similar. Eukaryotic cells are compound entities in which case the nuclear genome (...)
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  • The Principles of Life.Tibor Ganti - 2003 - Oxford University Press UK.
    This highly readable theory of life and its origins offers a non-technical discussion of a chemical perspective on the fundamental organisation of living systems. Essays on the biological and philosophical significance of Ganti's work of thirty years indicate not only its enduring theoretical significance, but also the continuing relevance and heuristic power of Ganti's insights.
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  • Evolution in Four Dimensions: Genetic, Epigenetic, Behavioral, and Symbolic Variation in the History of Life.Eva Jablonka, Marion J. Lamb & Anna Zeligowski - 2005 - Bradford.
    Ideas about heredity and evolution are undergoing a revolutionary change. New findings in molecular biology challenge the gene-centered version of Darwinian theory according to which adaptation occurs only through natural selection of chance DNA variations. In Evolution in Four Dimensions, Eva Jablonka and Marion Lamb argue that there is more to heredity than genes. They trace four "dimensions" in evolution -- four inheritance systems that play a role in evolution: genetic, epigenetic, behavioral, and symbolic. These systems, they argue, can all (...)
  • Modularity: Understanding the Development and Evolution of Natural Complex Systems.Werner Callebaut & Diego Rasskin-Gutman (eds.) - 2005 - MIT Press.
    This collection broadens the scientific discussion of modularity by bringing together experts from a variety of disciplines, including artificial life, ...
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  • The Major Transitions in Evolution.John Maynard Smith & Eörs Szathmáry - 1996 - Journal of the History of Biology 29 (1):151-152.
     
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