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Evolvability reconsidered

In Brett Calcott & Kim Sterelny (eds.), The Major Transitions in Evolution Revisited. MIT Press. pp. 83--100 (2011)

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  1. Chances and Propensities in Evo-Devo.Laura Nuño de la Rosa & Cristina Villegas - 2022 - British Journal for the Philosophy of Science 73 (2):509-533.
    While the notion of chance has been central in discussions over the probabilistic nature of natural selection and genetic drift, its role in the production of variants on which populational sampling takes place has received much less philosophical attention. This article discusses the concept of chance in evolution in the light of contemporary work in evo-devo. We distinguish different levels at which randomness and chance can be defined in this context, and argue that recent research on variability and evolvability demands (...)
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  • Did Human Culture Emerge in a Cultural Evolutionary Transition in Individuality?Dinah R. Davison, Claes Andersson, Richard E. Michod & Steven L. Kuhn - 2021 - Biological Theory 16 (4):213-236.
    Evolutionary Transitions in Individuality have been responsible for the major transitions in levels of selection and individuality in natural history, such as the origins of prokaryotic and eukaryotic cells, multicellular organisms, and eusocial insects. The integrated hierarchical organization of life thereby emerged as groups of individuals repeatedly evolved into new and more complex kinds of individuals. The Social Protocell Hypothesis proposes that the integrated hierarchical organization of human culture can also be understood as the outcome of an ETI—one that produced (...)
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  • Do microbes question standard thinking in the philosophy of biology? [REVIEW]Charlotte Werndl - 2013 - Analysis 73 (2):380-387.
    This is a highly welcome book that offers a fresh perspective on the philosophy of biology. It is of interest to both philosophers and biologists and to experienced readers as well as novices. The book is structured into four sections ‘Science’, ‘Biology’, ‘Microbes’ and ‘Humans’ and consists of a collection of articles written by John Dupré over the past few years.
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  • Isolability as the unifying feature of modularity.Lucas J. Matthews - 2019 - Biology and Philosophy 34 (2):20.
    Although the concept of modularity is pervasive across fields and disciplines, philosophers and scientists use the term in a variety of different ways. This paper identifies two distinct ways of thinking about modularity, and considers what makes them similar and different. For philosophers of mind and cognitive science, cognitive modularity helps explain the capacities of brains to process sundry and distinct kinds of informational input. For philosophy of biology and evolutionary science, biological modularity helps explain the capacity of random evolutionary (...)
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  • The struggle for life and adaptation by natural selection.Adam Krashniak - 2021 - Biology and Philosophy 36 (3):1-16.
    While the struggle for life played an important role in the process of natural selection as it was conceived by Darwin, natural selection is commonly characterized today as a process which does not necessarily involve struggle. Nevertheless, there have been some attempts to show the importance of struggle to the process of natural selection. The present paper aims to continue these attempts and clarify the precise evolutionary role of struggle. The paper focuses on a recent dispute regarding the role of (...)
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  • Fischer-style Compatibilism.Michael Garnett - 2013 - Analysis 73 (2):387-397.
    This is a critical review essay on John Martin Fischer's Deep Control: Essays on Free Will and Value.
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  • Conceptual Roles of Evolvability across Evolutionary Biology: Between Diversity and Unification.Cristina Villegas, Alan C. Love, Laura Nuño de la Rosa, Ingo Brigandt & Günter P. Wagner - 2023 - In Thomas F. Hansen, David Houle, Mihaela Pavličev & Christophe Pélabon (eds.), Evolvability: A Unifying Concept in Evolutionary Biology? MIT Press. pp. 35–54.
    A number of biologists and philosophers have noted the diversity of interpretations of evolvability in contemporary evolutionary research. Different clusters of research defined by co-citation patterns or shared methodological orientation sometimes concentrate on distinct conceptions of evolvability. We examine five different activities where the notion of evolvability plays conceptual roles in evolutionary biological investigation: setting a research agenda, characterization, explanation, prediction, and control. Our analysis of representative examples demonstrates how different conceptual roles of evolvability are quasi-independent and yet exhibit important (...)
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  • Evolvability as a Disposition: Philosophical Distinctions, Scientific Implications.Ingo Brigandt, Cristina Villegas, Alan C. Love & Laura Nuño de la Rosa - 2023 - In Thomas F. Hansen, David Houle, Mihaela Pavličev & Christophe Pélabon (eds.), Evolvability: A Unifying Concept in Evolutionary Biology? MIT Press. pp. 55–72.
    A disposition or dispositional property is a capacity, ability, or potential to display or exhibit some outcome. Evolvability refers to a disposition to evolve. This chapter discusses why the dispositional nature of evolvability matters—why philosophical distinctions about dispositions can have scientific implications. To that end, we build a conceptual toolkit with vocabulary from prior philosophical analyses using a different disposition: protein foldability. We then apply this toolkit to address several methodological questions related to evolvability. What entities are the bearers of (...)
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  • Life on Earth is an individual.Margarida Hermida - 2016 - Theory in Biosciences 135 (1-2):37-44.
    Life is a self-maintaining process based on metabolism. Something is said to be alive when it exhibits organization and is actively involved in its own continued existence through carrying out metabolic processes. A life is a spatio-temporally restricted event, which continues while the life processes are occurring in a particular chunk of matter (or, arguably, when they are temporally suspended, but can be restarted at any moment), even though there is continuous replacement of parts. Life is organized in discrete packages, (...)
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