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  1. A hierarchy of species concepts: the denouement in the saga of the species problem.R. L. Mayden - 1997 - In M. F. Claridge, H. A. Dawah & M. R. Wilson (eds.), Species: The units of diversity,. Chapman & Hall. pp. 381–423.
    At least 22 concepts of species are in use today and many of these are notably incompatible in their accounts of biological diversity. Much of the traditional turmoil embodied in the species problem ultimately derives from the packaging of inappropriate criteria for species into a single concept. This results from a traditional conflation of function of concepts with their applications, definitions with concepts, taxonomic categories with groups, and the ontological status of real species with teleological approaches to recover them. Analogous (...)
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  • Infinite graphs in systematic biology, with an application to the species problem.Samuel A. Alexander - 2013 - Acta Biotheoretica 61 (2):181--201.
    We argue that C. Darwin and more recently W. Hennig worked at times under the simplifying assumption of an eternal biosphere. So motivated, we explicitly consider the consequences which follow mathematically from this assumption, and the infinite graphs it leads to. This assumption admits certain clusters of organisms which have some ideal theoretical properties of species, shining some light onto the species problem. We prove a dualization of a law of T.A. Knight and C. Darwin, and sketch a decomposition result (...)
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  • Phylogenetic definitions and taxonomic philosophy.Kevin de Queiroz - 1992 - Biology and Philosophy 7 (3):295-313.
    An examination of the post-Darwinian history of biological taxonomy reveals an implicit assumption that the definitions of taxon names consist of lists of organismal traits. That assumption represents a failure to grant the concept of evolution a central role in taxonomy, and it causes conflicts between traditional methods of defining taxon names and evolutionary concepts of taxa. Phylogenetic definitions of taxon names (de Queiroz and Gauthier 1990) grant the concept of common ancestry a central role in the definitions of taxon (...)
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  • The Functional Perspective of Organismal Biology.Arno Wouters - 2005 - In Thomas A. C. Reydon & Lia Hemerik (eds.), Current Themes in Theoretical Biology : A Dutch Perspective. Springer. pp. 33--69.
    Following Mayr (1961) evolutionary biologists often maintain that the hallmark of biology is its evolutionary perspective. In this view, biologists distinguish themselves from other natural scientists by their emphasis on why-questions. Why-questions are legitimate in biology but not in other natural sciences because of the selective character of the process by means of which living objects acquire their characteristics. For that reason, why-questions should be answered in terms of natural selection. Functional biology is seen as a reductionist science that applies (...)
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  • When monophyly is not enough: Exclusivity as the key to defining a phylogenetic species concept.Joel D. Velasco - 2009 - Biology and Philosophy 24 (4):473-486.
    A natural starting place for developing a phylogenetic species concept is to examine monophyletic groups of organisms. Proponents of “the” Phylogenetic Species Concept fall into one of two camps. The first camp denies that species even could be monophyletic and groups organisms using character traits. The second groups organisms using common ancestry and requires that species must be monophyletic. I argue that neither view is entirely correct. While monophyletic groups of organisms exist, they should not be equated with species. Instead, (...)
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  • Darwin’s solution to the species problem.Marc Ereshefsky - 2010 - Synthese 175 (3):405 - 425.
    Biologists and philosophers that debate the existence of the species category fall into two camps. Some believe that the species category does not exist and the term 'species' should be eliminated from biology. Others believe that with new biological insights or the application of philosophical ideas, we can be confident that the species category exists. This paper offers a different approach to the species problem. We should be skeptical of the species category, but not skeptical of the existence of those (...)
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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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  • The Communication Puzzle of the Species Problem.Yuichi Amitani - 2013 - Annals of the Japan Association for Philosophy of Science 21:1-20.
    The species problem is the longstanding puzzle regarding the nature of species. This paper aims to describe how biologists experience little communication breakdown when they have different conceptions of species. For this purpose, I analyze two debates on species and speciation between Guy Bush and Jerry Coyne & H. Allen Orr. Although they have radically different ideas on species, they experience little communication difficulty. I will argue that this is because they implicitly agreed on the referent of the group of (...)
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  • Species as individuals.Berit Brogaard - 2004 - Biology and Philosophy 19 (2):223-242.
    There is no question that the constituents of cells and organisms are joined together by the part-whole relation. Genes are part of cells, and cells are part of organisms. Species taxa, however, have traditionally been conceived of, not as wholes with parts, but as classes with members. But why does the relation change abruptly from part-whole to class-membership above the level of organisms? Ghiselin, Hull and others have argued that it doesn't. Cells and organisms are cohesive mereological sums, and since (...)
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  • Classes or Individuals? The Paradox of Systematics Revisited.Alessandro Rapini - 2004 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 35 (4):675-695.
    The circumscription of taxa and classification of organisms are fundamental tasks in the systematization of biological diversity. Their success depends on a unified idea concerning the species concept, evolution, and taxonomy; paradoxically, however, it requires a complete distinction between taxa and evolutionary units. To justify this view, I discuss these three topics of systematics. Species concepts are examined, and I propose a redefinition for the Taxonomic Species Concept based on nomenclatural properties, in which species are classes conventionally represented by a (...)
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  • Species as Ranked Taxa.David A. Baum - 2009 - Systematic Biology 58 (1):74-86.
    -/- Because species names play an important role in scientific communication, it is more important that species be understood to be taxa than that they be equated with functional ecological or evolutionary entities. Although most biologists would agree that taxa are composed of organisms that share a unique common history, 2 major challenges remain in developing a species-as-taxa concept. First, grouping: in the face of genealogical discordance at all levels in the taxonomic hierarchy, how can we understand the nature of (...)
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  • On robots as genetically modified invasive species.Michael Lemke & Keith W. Miller - 2014 - Journal of Information, Communication and Ethics in Society 12 (2):122-132.
    Purpose – This paper aims to explore similarities and differences between robots, invasive biological species, and genetically modified organisms. These comparisons are designed to better understand the potential effects of robots on human society. Design/methodology/approach – This paper applies established ideas in one discipline – biology – to issues that are less well understood, but actively being studied in another discipline – science and technology studies. Findings – Robots entering human society in large numbers share many of the characteristics of (...)
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  • Sociology, selection, and success: A critique of David Hull's analysis of science and systematics. [REVIEW]Michael J. Donoghue - 1990 - Biology and Philosophy 5 (4):459-472.
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  • The species problem: seeking new solutions for philosophers and biologists.Geoff Chambers - 2012 - Biology and Philosophy 27 (5):755-765.
    The new millennium has opened with a perfectly splendid decade of scholarship relating to the ‘Species Problem’. So, at least we now have a clear idea of what this is, but still no clear solution that will suit both biologists and philosophers. Richards has recently attempted to capture this story and to fill the void with two projects in one book. The first project is a descriptive and analytical history of the problem, which provides links to other recent works and (...)
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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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  • Species, Genes, and the Tree of Life.Joel D. Velasco - 2010 - British Journal for the Philosophy of Science 61 (3):599-619.
    A common view is that species occupy a unique position on the Tree of Life. Evaluating this claim requires an understanding of what the Tree of Life represents. The Tree represents history, but there are at least three biological levels that are often said to have genealogies: species, organisms, and genes. Here I focus on defending the plausibility of a gene-based account of the Tree. This leads to an account of species that are determined by gene genealogies. On this view, (...)
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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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  • The need for the incorporation of phylogeny in the measurement of biological diversity, with special reference to ecosystem functioning research.Ian King - 2009 - Bioessays 31 (1):107-116.
    Defining and measuring biodiversity is an important research area in biology, with very interesting theoretical and applied aspects. Numerous definitions have been proposed, and these definitions of biodiversity influence how it is measured. From the still commonly used measure of species diversity, through higher taxon diversity, molecular measures, ecological measures and indicator taxa, these measures have as their fundamental shortcoming the lack of an explicit consideration of the evolutionary context represented by phylogenies. Attempts have been made to incorporate phylogenetic considerations (...)
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  • (1 other version)The metaphysics of evolution. [REVIEW]Marc Ereshefsky - 1991 - Studies in History and Philosophy of Science Part A 22 (3):525-532.
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  • Species as historical individuals.Arnold G. Kluge - 1990 - Biology and Philosophy 5 (4):417-431.
    The species category is defined as thesmallest historical individual within which there is a parental pattern of ancestry and descent. The use of historical individual in this definition is consistent with the prevailing notion that speciesper se are not involved in processes — they are effects, not effectors. Reproductive isolation distinguishes biparental historical species from their parts, and it provides a basis for understanding the nature of the evidence used to discover historical individuals.
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  • The composite species concept: a rigorous basis for cladistic practice.D. J. Kornet & James W. McAllister - 2005 - In Thomas A. C. Reydon & Lia Hemerik (eds.), Current Themes in Theoretical Biology : A Dutch Perspective. Springer. pp. 95--127.
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  • Phylogenetic definitions and taxonomic philosophy.Kevin Queiroz - 1992 - Biology and Philosophy 7 (3):295-313.
    An examination of the post-Darwinian history of biological taxonomy reveals an implicit assumption that the definitions of taxon names consist of lists of organismal traits. That assumption represents a failure to grant the concept of evolution a central role in taxonomy, and it causes conflicts between traditional methods of defining taxon names and evolutionary concepts of taxa. Phylogenetic definitions of taxon names (de Queiroz and Gauthier 1990) grant the concept of common ancestry a central role in the definitions of taxon (...)
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  • The threefold parallelism of agassiz and haeckel, and polarity determination in phylogenetic systematics.Harold N. Bryant - 1995 - Biology and Philosophy 10 (2):197-217.
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