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  1. Grains of Description in Biological and Cultural Transmission.Pierrick Bourrat & Mathieu Charbonneau - 2022 - Journal of Cognition and Culture 22 (3-4):185-202.
    The question of whether cultural transmission is faithful has attracted significant debate over the last 30 years. The degree of fidelity with which an object is transmitted depends on 1) the features chosen to be relevant, and 2) the quantity of details given about those features. Once these choices have been made, an object is described at a particular grain. In the absence of conventions between different researchers and across different fields about which grain to use, transmission fidelity cannot be (...)
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  • Interpreting the History of Evolutionary Biology through a Kuhnian Prism: Sense or Nonsense?Koen B. Tanghe, Lieven Pauwels, Alexis De Tiège & Johan Braeckman - 2021 - Perspectives on Science 29 (1):1-35.
    Traditionally, Thomas S. Kuhn’s The Structure of Scientific Revolutions (1962) is largely identified with his analysis of the structure of scientific revolutions. Here, we contribute to a minority tradition in the Kuhn literature by interpreting the history of evolutionary biology through the prism of the entire historical developmental model of sciences that he elaborates in The Structure. This research not only reveals a certain match between this model and the history of evolutionary biology but, more importantly, also sheds new light (...)
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  • The stability of traits conception of the hologenome: An evolutionary account of holobiont individuality.Javier Suárez - 2020 - History and Philosophy of the Life Sciences 42 (1):1-27.
    Bourrat and Griffiths :33, 2018) have recently argued that most of the evidence presented by holobiont defenders to support the thesis that holobionts are evolutionary individuals is not to the point and is not even adequate to discriminate multispecies evolutionary individuals from other multispecies assemblages that would not be considered evolutionary individuals by most holobiont defenders. They further argue that an adequate criterion to distinguish the two categories is fitness alignment, presenting the notion of fitness boundedness as a criterion that (...)
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  • Interpreting Heritability Causally.Kate E. Lynch & Pierrick Bourrat - 2017 - Philosophy of Science 84 (1):14-34.
    A high heritability estimate usually corresponds to a situation in which trait variation is largely caused by genetic variation. However, in some cases of gene-environment covariance, causal intuitions about the sources of trait difference can vary, leading experts to disagree as to how the heritability estimate should be interpreted. We argue that the source of contention for these cases is an inconsistency in the interpretation of the concepts ‘genotype’, ‘phenotype’, and ‘environment’. We propose an interpretation of these terms under which (...)
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  • On the causal interpretation of heritability from a structural causal modeling perspective.Qiaoying Lu & Pierrick Bourrat - 2022 - Studies in History and Philosophy of Science Part A 94 (C):87-98.
  • Interpreting the History of Evolutionary Biology through a Kuhnian Prism: Sense or Nonsense?Koen Tanghe, Lieven Pauwels, Alexis De Tiège & Braeckman J. - 2021 - Perspectives on Science 29 (1):1-35.
    Traditionally, Thomas S. Kuhn’s The Structure of Scientific Revolutions (1962) is largely identified with his analysis of the structure of scientific revolutions. Here, we contribute to a minority tradition in the Kuhn literature by interpreting the history of evolutionary biology through the prism of the entire historical developmental model of sciences that he elaborates in The Structure. This research not only reveals a certain match between this model and the history of evolutionary biology but, more importantly, also sheds new light (...)
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  • What’s all the fuss about? The inheritance of acquired traits is compatible with the Central Dogma.M. Polo Camacho - 2020 - History and Philosophy of the Life Sciences 42 (3):1-15.
    The Central Dogma of molecular biology, which holds that DNA makes protein and not the other way around, is as influential as it is controversial. Some believe the Dogma has outlived its usefulness, either because it fails to fully capture the ins-and-outs of protein synthesis (Griffiths and Stotz, 2013; Stotz, 2006), because it turns on a confused notion of information (Sarkar, 2004), or because it problematically assumes the unidirectional flow of information from DNA to protein (Gottlieb, 2001). This paper evaluates (...)
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  • Reciprocal Causation and the Extended Evolutionary Synthesis.Andrew Buskell - 2019 - Biological Theory 14 (4):267-279.
    Kevin Laland and colleagues have put forward a number of arguments motivating an extended evolutionary synthesis. Here I examine Laland et al.'s central concept of reciprocal causation. Reciprocal causation features in many arguments supporting an expanded evolutionary framework, yet few of these arguments are clearly delineated. Here I clarify the concept and make explicit three arguments in which it features. I identify where skeptics can—and are—pushing back against these arguments, and highlight what I see as the empirical, explanatory, and methodological (...)
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  • Why the missing heritability might not be in the DNA.Pierrick Bourrat, Qiaoying Lu & Eva Jablonka - 2017 - Bioessays 39 (7):1700067.
    Graphical AbstractThere are four major hypotheses (H1, H2, H3, and H4) as to the source of missing heritability. We propose that estimates obtained from GWAS underestimate heritability by not taking into account non-DNA (epigenetic) sources of heritability. Taking those factors into account (H4) should result in increased heritability estimates.
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  • Unifying heritability in evolutionary theory.Pierrick Bourrat - 2022 - Studies in History and Philosophy of Science Part A 91 (C):201-210.
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  • Natural selection and the reference grain problem.Pierrick Bourrat - 2020 - Studies in History and Philosophy of Science Part A 80:1-8.
  • Natural Selection and Drift as Individual-Level Causes of Evolution.Pierrick Bourrat - 2018 - Acta Biotheoretica 66 (3):159-176.
    In this paper I critically evaluate Reisman and Forber’s :1113–1123, 2005) arguments that drift and natural selection are population-level causes of evolution based on what they call the manipulation condition. Although I agree that this condition is an important step for identifying causes for evolutionary change, it is insufficient. Following Woodward, I argue that the invariance of a relationship is another crucial parameter to take into consideration for causal explanations. Starting from Reisman and Forber’s example on drift and after having (...)
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  • In What Sense Can There Be Evolution by Natural Selection Without Perfect Inheritance?Pierrick Bourrat - 2019 - International Studies in the Philosophy of Science 32 (1):13-31.
    ABSTRACTIn Darwinian Population and Natural Selection, Peter Godfrey-Smith brought the topic of natural selection back to the forefront of philosophy of biology, highlighting different issues surro...
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  • Heritability, causal influence and locality.Pierrick Bourrat - 2019 - Synthese 198 (7):6689-6715.
    Heritability is routinely interpreted causally. Yet, what such an interpretation amounts to is often unclear. Here, I provide a causal interpretation of this concept in terms of range of causal influence, one of several causal dimensions proposed within the interventionist account of causation. An information-theoretic measure of range of causal influence has recently been put forward in the literature. Starting from this formalization and relying upon Woodward’s analysis, I show that an important problem associated with interpreting heritability causally, namely the (...)
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  • Evolution by Natural Selection: Confidence, Evidence and the Gap, by Michaelis Michael: Boca Raton, FL: CRC Press, 2016, pp. xv + 152, £61.99. [REVIEW]Pierrick Bourrat - 2017 - Australasian Journal of Philosophy 95 (4):816-819.
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  • Explaining Drift from a Deterministic Setting.Pierrick Bourrat - 2017 - Biological Theory 12 (1):27-38.
    Drift is often characterized in statistical terms. Yet such a purely statistical characterization is ambiguous for it can accept multiple physical interpretations. Because of this ambiguity it is important to distinguish what sorts of processes can lead to this statistical phenomenon. After presenting a physical interpretation of drift originating from the most popular interpretation of fitness, namely the propensity interpretation, I propose a different one starting from an analysis of the concept of drift made by Godfrey-Smith. Further on, I show (...)
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  • Dissolving the Missing Heritability Problem.Pierrick Bourrat & Qiaoying Lu - 2017 - Philosophy of Science 84 (5):1055-1067.
    Heritability estimates obtained from genome-wide association studies are much lower than those of traditional quantitative methods. This phenomenon has been called the “missing heritability problem.” By analyzing and comparing GWAS and traditional quantitative methods, we first show that the estimates obtained from the latter involve some terms other than additive genetic variance, while the estimates from the former do not. Second, GWAS, when used to estimate heritability, do not take into account additive epigenetic factors transmitted across generations, while traditional quantitative (...)
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  • Causation and Single Nucleotide Polymorphism Heritability.Pierrick Bourrat - 2020 - Philosophy of Science 87 (5):1073-1083.
    Genome-wide association studies of human complex traits have provided us with new estimates of heritability. These estimates foreground the question of genetic causation. After having presen...
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  • Epistemic Angst: Radical Skepticism and the Groundlessness of Our Believing, by Pritchard, Duncan: Princeton: Princeton University Press, 2016, pp. xv + 239, US$35. [REVIEW]Scott Aikin - 2017 - Australasian Journal of Philosophy 95 (4):819-822.