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  1. From Cutting Nature At Its Joints To Measuring It: New Kinds and New Kinds of People in Biology.Gordon McOuat - 2001 - Studies in History and Philosophy of Science Part A 32 (4):613-645.
    In the received version of the development of science, natural kinds are established in the preliminary stages and made more precise by measurement. By examining the move from nineteenth- to twentieth-century biology, this paper unpacks the notion of species as ‘natural kinds’ and grounds for discourse, questioning received notions about both kinds and species. Life sciences in the nineteenth century established several ‘monster-barring’ techniques to block disputes about the precise definition of species. Counterintuitively, precision and definition brought dispute and disrupted (...)
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  • Species, rules and meaning: The politics of language and the ends of definitions in 19th century natural history.Gordon R. McOuat - 1996 - Studies in History and Philosophy of Science Part A 27 (4):473-519.
  • ‘Species’ without species.Aaron Novick & W. Ford Doolittle - 2021 - Studies in History and Philosophy of Science Part A 87 (C):72-80.
    Biological science uses multiple species concepts. Order can be brought to this diversity if we recognize two key features. First, any given species concept is likely to have a patchwork structure, generated by repeated application of the concept to new domains. We illustrate this by showing how two species concepts (biological and ecological) have been modified from their initial eukaryotic applications to apply to prokaryotes. Second, both within and between patches, distinct species concepts may interact and hybridize. We thus defend (...)
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  • none.None None - 2021
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  • The dimensions, modes and definitions of species and speciation.John Wilkins - 2007 - Biology and Philosophy 22 (2):247-266.
    Speciation is an aspect of evolutionary biology that has received little philosophical attention apart from articles mainly by biologists such as Mayr (1988). The role of speciation as a terminus a quo for the individuality of species or in the context of punctuated equilibrium theory has been discussed, but not the nature of speciation events themselves. It is the task of this paper to attempt to bring speciation events into some kind of general scheme, based primarily upon the work of (...)
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  • Selection without replicators: the origin of genes, and the replicator/interactor distinction in etiobiology.John S. Wilkins, Ian Musgrave & Clem Stanyon - 2012 - Biology and Philosophy 27 (2):215-239.
    Genes are thought to have evolved from long-lived and multiply-interactive molecules in the early stages of the origins of life. However, at that stage there were no replicators, and the distinction between interactors and replicators did not yet apply. Nevertheless, the process of evolution that proceeded from initial autocatalytic hypercycles to full organisms was a Darwinian process of selection of favourable variants. We distinguish therefore between Neo-Darwinian evolution and the related Weismannian and Central Dogma divisions, on the one hand, and (...)
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  • Mayr’s Centenary Festschrift. [REVIEW]John S. Wilkins - 2007 - Biology and Philosophy 22 (4):603-610.
  • The metaphysical equivalence between 3D and 4D theories of species.Vanessa Triviño & María Cerezo - 2015 - Revista Portuguesa de Filosofia 71 (4):781-806.
    Resumo Neste artigo, vamos considerar o recente debate na metafísica da evolução, no que diz respeito tanto à persistência como à “mudança” em espécies biológicas, segundo a tese que considera a espécie como o agregado de indivíduos. Centrar-nos-emos na proposta de Thomas Reydon, que argumenta que em biologia, o termo “espécie” refere-se a duas entidades biológicas, por si denominadas evolverons e phylons, que desempenham vários papéis epistemológicos em pelo menos duas disciplinas diferentes, nomeadamente na biologia sistemática e na biologia evolutiva. (...)
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  • Towards a characterization of metaphysics of biology: metaphysics for and metaphysics in biology.Vanesa Triviño - 2022 - Synthese 200 (5):1-21.
    Since the last decades of the twentieth and the beginning of the twenty-first century, the use of metaphysics by philosophers when approaching conceptual problems in biology has increased. Some philosophers call this tendency in philosophy of biology ‘Metaphysics of Biology’. In this paper, I aim at characterizing Metaphysics of Biology by paying attention to the diverse ways philosophers use metaphysics when addressing conceptual problems in biology. I will claim that there are two different modes of doing Metaphysics of Biology, namely (...)
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  • On the nature of the species problem and the four meanings of 'species'.Thomas A. C. Reydon - 2005 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 36 (1):135-158.
    Present-day thought on the notion of species is troubled by a mistaken understanding of the nature of the issue: while the species problem is commonly understood as concerning the epistemology and ontology of one single scientific concept, I argue that in fact there are multiple distinct concepts at stake. An approach to the species problem is presented that interprets the term ‘species’ as the placeholder for four distinct scientific concepts, each having its own role in biological theory, and an explanation (...)
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  • The species problem and history. [REVIEW]Phillip R. Sloan - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (2):237-241.
  • Vague Kinds and Biological Nominalism.Peter Simons - 2013 - Metaphysica 14 (2):275-282.
    Among biological kinds, the most important are species. But species, however defined, have vague boundaries, both synchronically owing to hybridization and ongoing speciation, and diachronically owing to genetic drift and genealogical continuity despite speciation. It is argued that the solution to the problems of species and their vague boundaries is to adopt a thoroughgoing nominalism in regard to all biological taxa, from species to domains. The base entities are individual organisms: populations of these compose species and higher taxa. This accommodates (...)
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  • From Anomaly to Unification: Tracy Sonneborn and the Species Problem in Protozoa, 1954--1957. [REVIEW]Judy Johns Schloegel - 1999 - Journal of the History of Biology 32 (1):93 - 132.
    This article examines the critique of the biological species concept advanced by protozoan geneticist Tracy Sonneborn at the 1955 AAAS symposium on "the species problem," published subsequently in 1957. Although Sonneborn was a strong proponent of a population genetical conception of species, he became critical of the biological species concept for its failure to incorporate asexual and obligatory inbreeding organisms. It is argued that Sonneborn's intimate knowledge of the ciliate protozoan Paramecium aurelia species complex brought him into conflict with a (...)
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  • Species in three and four dimensions.Thomas A. C. Reydon - 2008 - Synthese 164 (2):161-184.
    There is an interesting parallel between two debates in different domains of contemporary analytic philosophy. One is the endurantism– perdurantism, or three-dimensionalism vs. four-dimensionalism, debate in analytic metaphysics. The other is the debate on the species problem in philosophy of biology. In this paper I attempt to cross-fertilize these debates with the aim of exploiting some of the potential that the two debates have to advance each other. I address two issues. First, I explore what the case of species implies (...)
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  • On the nature of the species problem and the four meanings of ‘species’.Thomas A. C. Reydon - 2005 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 36 (1):135-158.
  • The Hunting of the SNaRC: A Snarky Solution to the Species Problem.Brent D. Mishler & John S. Wilkins - 2018 - Philosophy, Theory, and Practice in Biology 10 (1).
    We argue that the logical outcome of the cladistics revolution in biological systematics, and the move towards rankless phylogenetic classification of nested monophyletic groups as formalized in the PhyloCode, is to eliminate the species rank along with all the others and simply name clades. We propose that the lowest level of formally named clade be the SNaRC, the Smallest Named and Registered Clade. The SNaRC is an epistemic level in the classification, not an ontic one. Naming stops at that level (...)
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  • What is a species, and what is not?Ernst Mayr - 1996 - Philosophy of Science 63 (2):262-277.
    I analyze a number of widespread misconceptions concerning species. The species category, defined by a concept, denotes the rank of a species taxon in the Linnaean hierarchy. Biological species are reproducing isolated from each other, which protects the integrity of their genotypes. Degree of morphological difference is not an appropriate species definition. Unequal rates of evolution of different characters and lack of information on the mating potential of isolated populations are the major difficulties in the demarcation of species taxa.
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  • The why and how of species.Ernst Mayr - 1988 - Biology and Philosophy 3 (4):431-441.
    The biological species concept deals both with the meaning of the sexual species as a harmonious gene pool and with its protection against deleterious outbreeding (effected by isolating mechanisms). According to the Darwin-Muller-Mayr theory isolating mechanisms are acquired by incipient species during alloparty. Isolating mechanisms are not the result of ad hoc selection, but of a change of function of properties acquired during the preceding isolation of the incipient species. The role of behavioral properties (recognition) among the isolating mechanisms has (...)
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  • Answers to these comments.Ernst Mayr - 1987 - Biology and Philosophy 2 (2):212-225.
  • Ontic and Epistemic Differentiation: Mechanistic Problems for Microbiology and Biology.Flavia Marcacci, Michal Oleksowicz & Angela Conti - forthcoming - Foundations of Science:1-23.
    Species are considered the basic unit of biological classification and evolution. Hence, they are used as a benchmark in several fields, although the ontological status of such a category has always been a matter of debate. This paper aims to discuss the problem of the definition of species within the new mechanistic approach. Nevertheless, the boundary between entities, activities, and mechanisms remains difficult to establish and always requires an analysis of what is meant by explanation. As a case study, the (...)
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  • Why was Darwin’s view of species rejected by twentieth century biologists?James Mallet - 2010 - Biology and Philosophy 25 (4):497-527.
    Historians and philosophers of science agree that Darwin had an understanding of species which led to a workable theory of their origins. To Darwin species did not differ essentially from ‘varieties’ within species, but were distinguishable in that they had developed gaps in formerly continuous morphological variation. Similar ideas can be defended today after updating them with modern population genetics. Why then, in the 1930s and 1940s, did Dobzhansky, Mayr and others argue that Darwin failed to understand species and speciation? (...)
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  • Theory, practice, and epistemology in the development of species concepts.David Magnus - 1996 - Studies in History and Philosophy of Science Part A 27 (4):521-545.
  • Are biological species real?Hugh Lehman - 1967 - Philosophy of Science 34 (2):157-167.
    Difficulties with the typological concept of species led biologists to reject the "typological" presupposition of an archetype which is manifest in each member of a species. The resulting concept of species, which is here called the phenotypic species concept, is considered as implying that biological species are not real. Modern population thinking has given rise to the concept of a species as a gene-pool. This modern concept is contrasted here with the phenotypic concept in light of some general criteria for (...)
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  • A Particular Synthesis: Aleksandr Promptov and Speciation in Birds. [REVIEW]Nikolai Krementsov - 2007 - Journal of the History of Biology 40 (4):637 - 682.
    During the 1930s, Aleksandr Promptov—a student of the founder of Russian population genetics Sergei Chetverikov—developed an elaborate concept of speciation in birds. He conducted field investigations aimed at giving a naturalistic content to the theoretical formulations and laboratory models of evolutionary processes advanced within the framework of population genetics, placing particular emphasis on the evolutionary role of bird behavior. Yet, although highly synthetic in combining biogeographical, taxonomic, genetic, ecological, and behavioral studies, Promptov's speciation concept was ignored by the architects of (...)
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  • The Russian Backdrop to Dobzhansky’s Genetics and the Origin of Species.Mikhail B. Konashev - 2023 - Journal of the History of Biology 56 (2):285-307.
    Theodosius Dobzhansky was one of the principal ‘founding fathers' of the modern ‘synthetic theory of evolution' and the ‘biological species' concept, first set forth in his classic book, Genetics and the Origin of Species (1937). Much of the discussion of Dobzhansky’s work by historians has focused on English-accessible sources, and has emphasized the roles of the Morgan School, and figures such as Sewall Wright, and Leslie C. Dunn. This article uses Dobzhansky’s Russian articles that are unknown to English-speaking readers, and (...)
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  • Can abstractions be causes?David M. Johnson - 1990 - Biology and Philosophy 5 (1):63-77.
    The Empiricist or Lockean view says natural kinds do not exist objectively in nature but are practical categories reflecting use of words. The Modern, Ostensive view says they do exist, and one can refer to such a kind by ostention and recursion, assuming his designation of it is related causally to the kind itself. However, this leads to a problem: Kinds are abstract repeatables, and it seems impossible that abstractions could have causal force. In defence of the Modern view, I (...)
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  • Theodosius Dobzhansky and the genetic race concept.Lisa Gannett - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (3):250-261.
    The use of ‘race’ as a proxy for population structure in the genetic mapping of complex traits has provoked controversy about its legitimacy as a category for biomedical research, given its social and political connotations. The controversy has reignited debates among scientists and philosophers of science about whether there is a legitimate biological concept of race. This paper examines the genetic race concept as it developed historically in the work of Theodosius Dobzhansky from the 1930s to 1950s. Dobzhansky’s definitions of (...)
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  • Revisiting Clarence King’s "Catastrophism and Evolution".Niles Eldredge - 2019 - Biological Theory 14 (4):247-253.
    Published comments by American scientists on Darwin’s evolutionary theory are rather rare in the latter half of the 19th century. Clarence King, the founding director of the U.S. Geological Survey in 1879, and an experienced field geologist, focused on the relation between Darwin’s evolutionary concepts and the larger context of Hutton/Lyell’s uniformitarianism versus Cuvier’s catastrophism in his 1877 paper, “Catastrophism and Evolution.” King knew that the fossil record contains little or no data supporting Darwin’s vision of gradual evolutionary change. Instead, (...)
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  • Species concepts and the ontology of evolution.Joel Cracraft - 1987 - Biology and Philosophy 2 (3):329-346.
    Biologists and philosophers have long recognized the importance of species, yet species concepts serve two masters, evolutionary theory on the one hand and taxonomy on the other. Much of present-day evolutionary and systematic biology has confounded these two roles primarily through use of the biological species concept. Theories require entities that are real, discrete, irreducible, and comparable. Within the neo-Darwinian synthesis, however, biological species have been treated as real or subjectively delimited entities, discrete or nondiscrete, and they are often capable (...)
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  • Las especies son linajes de poblaciones microevolutivamente interconectadas: uma mejor delimitación del concepto evolucionário de especie.Gustavo Caponi - 2013 - Principia: An International Journal of Epistemology 17 (3):395.
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  • How is a species kept together?Peter J. Beurton - 1995 - Biology and Philosophy 10 (2):181-196.
    Over the decades, there has been substantial empirical evidence showing that the unity of species cannot be maintained by gene flow. The biological species concept is inconclusive on this point. The suggestion is made that the unity of species is maintained rather by selection constantly spreading new alleles throughout the species, or bygene circulation. There is a lack in conceptual distinction between gene flow and gene circulation which lies at the heart of the problem. The concept of gene circulation also (...)
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  • Adaptive speciation: the role of natural selection in mechanisms of geographic and non-geographic speciation.Jason M. Baker - 2005 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 36 (2):303-326.
    Recent discussion of mechanism has suggested new approaches to several issues in the philosophy of science, including theory structure, causal explanation, and reductionism. Here, I apply what I take to be the fruits of the Ônew mechanical philosophyÕ to an analysis of a contemporary debate in evolutionary biology about the role of natural selection in speciation. Traditional accounts of that debate focus on the geographic context of genetic divergence— namely, whether divergence in the absence of geographic isolation is possible (or (...)
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  • Defining Species: A Multi-Level Approach.Tudor M. Baetu - 2011 - Acta Biotheoretica 60 (3):239-255.
    Different concepts define species at the pattern-level grouping of organisms into discrete clusters, the level of the processes operating within and between populations leading to the formation and maintenance of these clusters, or the level of the inner-organismic genetic and molecular mechanisms that contribute to species cohesion or promote speciation. I argue that, unlike single-level approaches, a multi-level framework takes into account the complex sequences of cause-effect reinforcements leading to the formation and maintenance of various patterns, and allows for revisions (...)
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  • Witnessing, Trans-“Species” Trauma Testimony, and Sticky Wounds in Contemporary Australian Poetry.Meera Atkinson - 2023 - Angelaki 28 (4):76-89.
    Literary trauma theory has traditionally been a humanist concern, and the concept of witnessing, so central to the theorization of trauma, has focused on human experience and relationships. This article stages an interdisciplinary intervention by conceptualizing trans-“species” trauma testimony as a literary encounter involving a double-layered witnessing; the human artist witnessing nonhuman animals’ witnessing to the failings and crises brought about by human society. Focusing on a selection of contemporary Australian poems, a view emerges of poetic witnessing and testimony that (...)
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  • International Handbook of Research in History, Philosophy and Science Teaching.Michael R. Matthews (ed.) - 2014 - Springer.
    This inaugural handbook documents the distinctive research field that utilizes history and philosophy in investigation of theoretical, curricular and pedagogical issues in the teaching of science and mathematics. It is contributed to by 130 researchers from 30 countries; it provides a logically structured, fully referenced guide to the ways in which science and mathematics education is, informed by the history and philosophy of these disciplines, as well as by the philosophy of education more generally. The first handbook to cover the (...)
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  • Species Pluralism: Conceptual, Ontological, and Practical Dimensions.Justin Bzovy - unknown
    Species are central to biology, but there is currently no agreement on what the adequate species concept should be, and many have adopted a pluralist stance: different species concepts will be required for different purposes. This thesis is a multidimensional analysis of species pluralism. First I explicate how pluralism differs monism and relativism. I then consider the history of species pluralism. I argue that we must re-frame the species problem, and that re-evaluating Aristotle's role in the histories of systematics can (...)
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  • We are Nearly Ready to Begin the Species Problem.Matthew J. Barker - 2022 - In John S. Wilkins, Frank E. Zachos & Igor Ya Pavlinov (eds.), Species Problems and Beyond: Contemporary Issues in Philosophy and Practice. Boca Raton, FL: Routledge: Taylor & Francis Group. pp. 3-38.
    This paper isolates a hard, long-standing species problem: developing a comprehensive and exacting theory about the constitutive conditions of the species category, one that is accurate for most of the living world, and which vindicates the widespread view that the species category is of more theoretical import than categories such as genus, sub-species, paradivision, and stirp. The paper then uncovers flaws in several views that imply we have either already solved that hard species problem or dissolved it altogether – so-called (...)
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  • Aspectos metafísicos na física de Newton: Deus.Bruno Camilo de Oliveira - 2011 - In Luiz Henrique de Araújo Dutra & Alexandre Meyer Luz (eds.), Coleção rumos da epistemologia. Florianópolis, SC, Brasil: NEL/UFSC. pp. 186-201.
    CAMILO, Bruno. Aspectos metafísicos na física de Newton: Deus. In: DUTRA, Luiz Henrique de Araújo; LUZ, Alexandre Meyer (org.). Temas de filosofia do conhecimento. Florianópolis: NEL/UFSC, 2011. p. 186-201. (Coleção rumos da epistemologia; 11). Através da análise do pensamento de Isaac Newton (1642-1727) encontramos os postulados metafísicos que fundamentam a sua mecânica natural. Ao deduzir causa de efeito, ele acreditava chegar a uma causa primeira de todas as coisas. A essa primeira causa de tudo, onde toda a ordem e leis (...)
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  • The Origins of Species Concepts.John Simpson Wilkins - 2003 - Dissertation, University of Melbourne
    The longstanding species problem in biology has a history that suggests a solution, and that history is not the received history found in many texts written by biologists or philosophers. The notion of species as the division into subordinate groups of any generic predicate was the staple of logic from Aristotle through the middle ages until quite recently. However, the biological species concept during the same period was at first subtly and then overtly different. Unlike the logic sense, which relied (...)
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  • Methodological Issues in Science Education Research: A Perspective from the Philosophy of Science.Keith S. Taber - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1839-1893.
    This chapter offers an overview of methodological issues within science education research and considers the extent to which this area of scholarship can be understood to (actually and potentially) be scientific. The chapter considers the nature of education and educational research, how methodological issues are discussed in educational research and the range of major methodological strategies commonly used. It is suggested that the way research is discussed, undertaken and reported seems quite different in science education from research in the natural (...)
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  • What are biological species? : the impact of the current debate in taxonomy on the species problem.Nicole Leroux - unknown
    For the past twenty years, taxonomy has been in a state of turmoil. This confusion brings along with it four distinct schools of thought, each of which offers a different concept of biological species. The thesis will show that these concepts are purely operational and have only a weak theoretical force. In turn, it will be argued that a sound definition of species uses the notion of natural kinds, which is itself defined in term of non-causal nomological regularities.
     
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  • The species problem and its logic: Inescapable ambiguity and framework-relativity.Steven James Bartlett - 2015 - Willamette University Faculty Research Website, ArXiv.Org, and Cogprints.Org.
    For more than fifty years, taxonomists have proposed numerous alternative definitions of species while they searched for a unique, comprehensive, and persuasive definition. This monograph shows that these efforts have been unnecessary, and indeed have provably been a pursuit of a will o’ the wisp because they have failed to recognize the theoretical impossibility of what they seek to accomplish. A clear and rigorous understanding of the logic underlying species definition leads both to a recognition of the inescapable ambiguity that (...)
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  • Aristotelian Species Pluralism.Justin Bzovy - unknown
    Species pluralism allows for multiple species concepts. Given the overwhelming number of such concepts, this seems like an obvious interpretation of how `species' is used in contemporary biology. But why has it taken so long for this approach to be considered? I argue that part of the reason pluralism was overlooked due to the widespread use of a particular rhetorical strategy developed by Ernst Mayr. This strategy provided a framework for debates about the correct conception of species. That is, the (...)
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  • Adaptive speciation: The role of natural selection in mechanisms of geographic and non-geographic speciation.Jason M. Byron - 2005 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 36 (2):303-326.
    Recent discussion of mechanism has suggested new approaches to several issues in the philosophy of science, including theory structure, causal explanation, and reductionism. Here, I apply what I take to be the fruits of the 'new mechanical philosophy' to an analysis of a contemporary debate in evolutionary biology about the role of natural selection in speciation. Traditional accounts of that debate focus on the geographic context of genetic divergence--namely, whether divergence in the absence of geographic isolation is possible (or significant). (...)
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