25 found
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  1. Holobionts as Units of Selection and a Model of Their Population Dynamics and Evolution.Joan Roughgarden, Scott F. Gilbert, Eugene Rosenberg, Ilana Zilber-Rosenberg & Elisabeth A. Lloyd - 2018 - Biological Theory 13 (1):44-65.
    Holobionts, consisting of a host and diverse microbial symbionts, function as distinct biological entities anatomically, metabolically, immunologically, and developmentally. Symbionts can be transmitted from parent to offspring by a variety of vertical and horizontal methods. Holobionts can be considered levels of selection in evolution because they are well-defined interactors, replicators/reproducers, and manifestors of adaptation. An initial mathematical model is presented to help understand how holobionts evolve. The model offered combines the processes of horizontal symbiont transfer, within-host symbiont proliferation, vertical symbiont (...)
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  2. The Birth of the Holobiont: Multi-species Birthing Through Mutual Scaffolding and Niche Construction.Lynn Chiu & Scott F. Gilbert - 2015 - Biosemiotics 8 (2):191-210.
    Holobionts are multicellular eukaryotes with multiple species of persistent symbionts. They are not individuals in the genetic sense— composed of and regulated by the same genome—but they are anatomical, physiological, developmental, immunological, and evolutionary units, evolved from a shared relationship between different species. We argue that many of the interactions between human and microbiota symbionts and the reproductive process of a new holobiont are best understood as instances of reciprocal scaffolding of developmental processes and mutual construction of developmental, ecological, and (...)
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  3.  55
    Rethinking individuality: the dialectics of the holobiont.Scott F. Gilbert & Alfred I. Tauber - 2016 - Biology and Philosophy 31 (6):839-853.
    Given immunity’s general role in the organism’s economy—both in terms of its internal environment as well as mediating its external relations—immune theory has expanded its traditional formulation of preserving individual autonomy to one that includes accounting for nutritional processes and symbiotic relationships that require immune tolerance. When such a full ecological alignment is adopted, the immune system becomes the mediator of both defensive and assimilative environmental intercourse, where a balance of immune rejection and tolerance governs the complex interactions of the (...)
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  4.  43
    The embryological origins of the gene theory.Scott F. Gilbert - 1978 - Journal of the History of Biology 11 (2):307-351.
  5.  81
    Evo-devo, devo-evo, and devgen-popgen.Scott F. Gilbert - 2003 - Biology and Philosophy 18 (2):347-352.
  6.  39
    Ecological Developmental Biology: Interpreting Developmental Signs.Scott F. Gilbert - 2016 - Biosemiotics 9 (1):51-60.
    Developmental biology is a theory of interpretation. Developmental signals are interpreted differently depending on the previous history of the responding cell. Thus, there is a context for the reception of a signal. While this conclusion is obvious during metamorphosis, when a single hormone instructs some cells to proliferate, some cells to differentiate, and other cells to die, it is commonplace during normal development. Paracrine factors such as BMP4 can induce apoptosis, proliferation, or differentiation depending upon the history of the responding (...)
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  7.  45
    The Generation of Novelty: The Province of Developmental Biology.Scott F. Gilbert - 2006 - Biological Theory 1 (2):209-212.
  8. Biological individuality: a relational reading.Scott F. Gilbert - 2017 - In Scott Lidgard & Lynn K. Nyhart (eds.), Biological Individuality: Integrating Scientific, Philosophical, and Historical Perspectives. University of Chicago Press.
     
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  9.  41
    Expanding the Temporal Dimensions of Developmental Biology: The Role of Environmental Agents in Establishing Adult-Onset Phenotypes.Scott F. Gilbert - 2011 - Biological Theory 6 (1):65-72.
    Developmental biology is expanding into several new areas. One new area of study concerns the production of adult-onset phenotypes by exposure of the fetus or neonate to environmental agents. These agents include maternal nutrients, developmental modulators (endocrine disruptors), and maternal care. In all three cases, a major mechanism for the generation of the altered phenotype is chromatin modification. Nutrient conditions, developmental modulators, and even maternal care appear to alter DNA methylation and other associated changes in chromatin that regulate gene expression. (...)
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  10.  56
    Wormwholes: A commentary on K. F. Schaffner's "genes, behavior, and developmental emergentism".Scott F. Gilbert & Erik M. Jorgensen - 1998 - Philosophy of Science 65 (2):259-266.
    Although Caenorhabditis elegans was chosen and modified to be an organism that would facilitate a reductionist program for neurogenetics, recent research has provided evidence for properties that are emergent from the neurons. While neurogenetic advances have been made using C. elegans which may be useful in explaining human neurobiology, there are severe limitations on C. elegans to explain any significant human behavior.
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  11.  31
    Cells in search of community: Critiques of weismannism and selectable units in ontogeny.Scott F. Gilbert - 1992 - Biology and Philosophy 7 (4):473-487.
  12.  17
    Looking at embryos: the visual and conceptual aesthetics of emerging form.Scott F. Gilbert & Marion Faber - 1996 - In Alfred I. Tauber (ed.), The Elusive Synthesis: Aesthetics and Science. Kluwer Academic Publishers. pp. 125--151.
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  13.  23
    'Show Me Your Original Face Before You Were Born': The Convergence of Public Fetuses and Sacred DNA.Scott F. Gilbert & Rebecca Howes-Mischel - 2004 - History and Philosophy of the Life Sciences 26 (3/4):377 - 479.
    Embryology is an intensely visual field, and it has provided the public with images of human embryos and fetuses. The responses to these images can be extremely powerful and personal, and the images (as well as our reactions to them) are conditioned by social and political agendas. The image of the 'autonomous fetus' abstracts the fetus from the mother, the womb, and from all social contexts, thereby emphasizing 'individuality'. The image of 'sacred DNA' emphasizes DNA as the unmoved mover, the (...)
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  14.  6
    The role of predator-induced polyphenism in the evolution of cognition: A Baldwinian speculation.Scott F. Gilbert - 2003 - In Bruce H. Weber & David J. Depew (eds.), Evolution and Learning: The Baldwin Effect Reconsidered. MIT Press. pp. 235--252.
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  15.  18
    Selected bibliography on History of Embryology and Development.Richard M. Burian & Scott F. Gilbert - 2000 - History and Philosophy of the Life Sciences 22 (3):325 - 333.
  16. A Conceptual History of Modern Embryology, Vol. VII.Scott F. Gilbert - 1994 - Journal of the History of Biology 27 (2):368-370.
     
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  17.  26
    An Introduction: The Symposium on The Evolution of Individuality by Leo W. Buss.Scott F. Gilbert, Sahotra Sarkar & Alfred I. Tauber - 1992 - Biology and Philosophy 7 (4):461-462.
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  18.  15
    Bacchus in the laboratory: in defense of scientific puns.Scott F. Gilbert - 1985 - Perspectives in Biology and Medicine 29 (1):148-152.
  19. Changements de paradigme dans l'induction neurale.Scott F. Gilbert - 2000 - Revue d'Histoire des Sciences 53 (3-4):555-580.
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  20.  20
    Introduction Postmodernism and Science.Scott F. Gilbert - 1995 - Science in Context 8 (4):559-561.
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  21.  21
    Paradigm shifts in neural induction / Changements de paradigme dans l'induction neurale.Scott F. Gilbert - 2000 - Revue d'Histoire des Sciences 53 (3):555-580.
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  22.  29
    Resurrecting the Body: Has Postmodernism Had Any Effect on Biology?Scott F. Gilbert - 1995 - Science in Context 8 (4):563-577.
    The ArgumentWhile postmodernism has had very little influence in biology, it can provide a framework for discussing the context in which biology is done. Here, four biological views of the body/self are contrasted: the neural, immunological, genetic, and Phenotypic bodies. Each physical view of the body extrapolates into a different model of the body politic, and each posits a different relationship between bodies of knowledge. The neural view of the body models a body politic wherein society is defined by its (...)
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  23.  30
    Michael Ruse—Bare-Knuckle Fighting: EvoDevo versus Natural Selection : Second to the Right, Straight on till Morning.Scott F. Gilbert - 2007 - Biological Theory 2 (1):74-75.
  24. Epigenetic landscaping: Waddington's use of cell fate bifurcation diagrams. [REVIEW]Scott F. Gilbert - 1991 - Biology and Philosophy 6 (2):135-154.
    From the 1930s through the 1970s, C. H. Waddington attempted to reunite genetics, embryology, and evolution. One of the means to effect this synthesis was his model of the epigenetic landscape. This image originally recast genetic data in terms of embryological diagrams and was used to show the identity of genes and inducers and to suggest the similarities between embryological and genetic approaches to development. Later, the image became more complex and integrated gene activity and mutations. These revised epigenetic landscapes (...)
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  25.  16
    Review: Embryos in Wax: Models from the Ziegler Studio (review). [REVIEW]Scott F. Gilbert & Jonathan Bard - 2003 - Perspectives in Biology and Medicine 46 (1):156.