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  1. The myth of Frederic Clements’s mutualistic organicism, or: on the necessity to distinguish different concepts of organicism.Thomas Kirchhoff - 2020 - History and Philosophy of the Life Sciences 42 (2):1-27.
    In the theory and history of ecology, Frederic Clements’s theory of plant communities is usually presented as the historical prototype and a paradigmatic example of synecological organicism, characterised by the assumption that ecological communities are functionally integrated units of mutually dependent species. In this paper, I will object to this standard interpretation of Clements’s theory. Undoubtedly, Clements compares plant communities with organisms and calls them “complex organisms” and “superorganisms”. Further, he can indeed be regarded as a proponent of ecological organicism—provided (...)
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  • What is a Target System?Alkistis Elliott-Graves - 2020 - Biology and Philosophy 35 (2):1-22.
    Many phenomena in the natural world are complex, so scientists study them through simplified and idealised models. Philosophers of science have sought to explain how these models relate to the world. On most accounts, models do not represent the world directly, but through target systems. However, our knowledge of target systems is incomplete. First, what is the process by which target systems come about? Second, what types of entity are they? I argue that the basic conception of target systems, on (...)
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  • Informative ecological models without ecological forces.Justin Donhauser - 2020 - Synthese 197 (6):2721-2743.
    Sagoff (2016) criticizes widely used “theoretical” methods in ecology; arguing that those methods employ models that rely on problematic metaphysical assumptions and are therefore uninformative and useless for practical decision-making. In this paper, I show that Sagoff misconstrues how such model-based methods work in practice, that the main threads of his argument are problematic, and that his substantive conclusions are consequently unfounded. Along the way, I illuminate several ways the model-based inferential methods he criticizes can be, and have been, usefully (...)
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  • Anchoring in Ecosystemic Kinds.Matthew H. Slater - 2018 - Synthese 195 (4):1487-1508.
    The world contains many different types of ecosystems. This is something of a commonplace in biology and conservation science. But there has been little attention to the question of whether such ecosystem types enjoy a degree of objectivity—whether they might be natural kinds. I argue that traditional accounts of natural kinds that emphasize nomic or causal–mechanistic dimensions of “kindhood” are ill-equipped to accommodate presumptive ecosystemic kinds. In particular, unlike many other kinds, ecosystemic kinds are “anchored” to the contingent character of (...)
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  • Theoretical ecology as etiological from the start.Justin Donhauser - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 60:67-76.
    The world’s leading environmental advisory institutions look to ecological theory and research as an objective guide for policy and resource management decision-making. In addition to various theoretical merits of doing so, it is therefore crucially important to clear up confusions about ecology’s conceptual foundations and to make plain the basic workings of inferential methods used in the science. Through discussion of key moments in the genesis of the theoretical branch of ecology, this essay elucidates a general heuristic role of teleological (...)
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  • Making Ecological Values Make Sense: Toward More Operationalizable Ecological Legislation.Justin Donhauser - 2016 - Ethics and the Environment 21 (2):1-25.
    Value claims about ecological entities, their functionality, and properties take center stage in so-called “ecological” ethical and aesthetic theories. For example, the claim that the biodiversity in an old-growth forest imbues it with “value in and for itself” is an explicit value claim about an ecological property. And the claim that one can study “the aesthetics of nature, including natural objects...such as ecosystems” presupposes that natural instances of a type of ecological entity exist and can be regarded as more or (...)
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  • Contextualising the Teaching and Learning of Ecology: Historical and Philosophical Considerations.Ageliki Lefkaditou, Konstantinos Korfiatis & Tasos Hovardas - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 523-550.
    Ecology has gradually gained salience during the last few decades and ecological issues, including land use changes, global warming, biodiversity loss, food shortage, and so forth, seem to be gaining public attention. Though philosophers of science had given little attention to ecology, there is a lot of interesting work being currently pursued in philosophy of ecology and environmental philosophy. As Colyvan and colleagues put it, “ecology is an important and fascinating branch of biology, with distinctive philosophical issues” (Colyvan et al. (...)
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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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  • Ecosystems as Spontaneous Orders.Andy Lamey - 2015 - Critical Review: A Journal of Politics and Society 27 (1):64-88.
    The notion of a spontaneous order has a long history in the philosophy of economics, where it has been used to advance a view of markets as complex networks of information that no single mind can apprehend. Traditionally, the impossibility of grasping all of the information present in the spontaneous order of the market has been invoked as grounds for not subjecting markets to central planning. A less noted feature of the spontaneous order concept is that when it is applied (...)
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  • Ecosystem Evolution is About Variation and Persistence, not Populations and Reproduction.Frédéric Bouchard - 2014 - Biological Theory 9 (4):382-391.
    Building upon a non-standard understanding of evolutionary process focusing on variation and persistence, I will argue that communities and ecosystems can evolve by natural selection as emergent individuals. Evolutionary biology has relied ever increasingly on the modeling of population dynamics. Most have taken for granted that we all agree on what is a population. Recent work has reexamined this perceived consensus. I will argue that there are good reasons to restrict the term “population” to collections of monophyletically related replicators and (...)
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  • The Legend of Order and Chaos: Communities and Early Community Ecology.Christopher H. Eliot - 2011 - In Kevin deLaplante, Bryson Brown & Kent A. Peacock (eds.), Philosophy of ecology. Waltham, MA: North-Holland. pp. 49--108.
    A community, for ecologists, is a unit for discussing collections of organisms. It refers to collections of populations, which consist (by definition) of individuals of a single species. This is straightforward. But communities are unusual kinds of objects, if they are objects at all. They are collections consisting of other diverse, scattered, partly-autonomous, dynamic entities (that is, animals, plants, and other organisms). They often lack obvious boundaries or stable memberships, as their constituent populations not only change but also move in (...)
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  • Understanding colonial traits using symbiosis research and ecosystem ecology.Frédéric Bouchard - 2009 - Biological Theory 4 (3):240-246.
    E. O. Wilson (1974: 54) describes the problem that social organisms pose: “On what bases do we distinguish the extremely modified members of an invertebrate colony from the organs of a metazoan animal?” This framing of the issue has inspired many to look more closely at how groups of organisms form and behave as emergent individuals. The possible existence of “superorganisms” test our best intuitions about what can count and act as genuine biological individuals and how we should study them. (...)
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  • Does the study of facilitation require a revision of the Hutchinsonian niche concept?Antoine C. Dussault - 2022 - Biology and Philosophy 37 (2):1-22.
    This paper revisits the debate over whether the study of facilitation requires ecologists to revise their understanding of the relationship between realized and fundamental niches as conceptualized by Hutchinson. Following Rodriguez-Cabal et al., I argue against Bruno et al.’s claim that facilitation can make a species’ realized niche larger than its fundamental niche. However, I also maintain that the abstract Hutchinsonian conceptualization of the niche makes a whole range of facilitative interactions—which I propose to call ameliorative facilitation—invisible to niche-based approaches (...)
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  • Should we Ascribe Capabilities to Species and Ecosystems? A Critical Analysis of Ecocentric Versions of the Capabilities Approach.Anders Melin - 2021 - Journal of Agricultural and Environmental Ethics 34 (5):1-13.
    Martha Nussbaum’s capabilities approach is today one of the most influential theories of justice. In her earlier works on the capabilities approach, Nussbaum only applies it to humans, but in later works she extends the capabilities approach to include sentient animals. Contrary to Nussbaum’s own view, some scholars, for example, David Schlosberg, Teea Kortetmäki and Daniel L. Crescenzo, want to extend the capabilities approach even further to include collective entities, such as species and ecosystems. Though I think we have strong (...)
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  • Methodological Strategies in Microbiome Research and their Explanatory Implications.Maureen A. O’Malley & Derek J. Skillings - 2018 - Perspectives on Science 26 (2):239-265.
    . Early microbiome research found numerous associations between microbial community patterns and host physiological states. These findings hinted at community-level explanations. “Top-down” experiments, working with whole communities, strengthened these explanatory expectations. Now, “bottom-up” mechanism-seeking approaches are dissecting communities to focus on specific microbes carrying out particular biochemical activities. To understand the interplay between methodological and explanatory scales, we examine claims of “dysbiosis,” when host illness is proposed as the consequence of a community state. Our analysis concludes with general observations about (...)
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  • Indexically Structured Ecological Communities.Christopher Hunter Lean - 2018 - Philosophy of Science 85 (3):501-522.
    Ecological communities are seldom, if ever, biological individuals. They lack causal boundaries as the populations that constitute communities are not congruent and rarely have persistent functional roles regulating the communities’ higher-level properties. Instead we should represent ecological communities indexically, by identifying ecological communities via the network of weak causal interactions between populations that unfurl from a starting set of populations. This precisification of ecological communities helps identify how community properties remain invariant, and why they have robust characteristics. This respects the (...)
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  • The holobiont self: understanding immunity in context.Tamar Schneider - 2021 - History and Philosophy of the Life Sciences 43 (3):1-23.
    Both concepts of the holobiont and the immune system are at the heart of an ongoing scientific and philosophical examination concerning questions of the organism’s individuality and identity as well as the relations between organisms and their environment. Examining the holobiont, the question of boundaries and individuality is challenging because it is both an assemblage of organisms with physiological cohesive aspects. I discuss the concept of immunity and the immune system function from the holobiont perspective. Because of the host-microbial close (...)
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  • Ethics in Biodiversity Conservation.Patrik Baard - 2021 - London and New York: Routledge.
    This book examines the role of ethics and philosophy in biodiversity conservation. The objective of this book is two-fold: on the one hand it offers a detailed and systematic account of central normative concepts often used, but rarely explicated nor justified, within conservation biology. Such concepts include 'values', 'rights', and 'duties'. The second objective is to emphasize to environmental philosophers and applied ethicists the many interesting decision-making challenges of biodiversity conservation. The book argues that a nuanced account of instrumental values (...)
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  • Scaling up; scaling down: What’s missing?Helen E. Longino - 2019 - Synthese 198 (4):2849-2863.
    What are we trying to explain when we explain behavior? How is behavior conceptualized as an object of study and how else might it be conceptualized? Longino urges pluralism with respect to causes and explanations of behavior. This paper extends Longino’s analysis to the object of those explanations and urges pluralism with respect to behavior itself. The paper proposes that there are three ways in which behavior can be conceptualized, each of which opens to different kinds of research questions.
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  • Environmental Ethics.Roberta L. Millstein - 2013 - In Kostas Kampourakis (ed.), The Philosophy of Biology: a Companion for Educators. Dordrecht: Springer.
    A number of areas of biology raise questions about what is of value in the natural environment and how we ought to behave towards it: conservation biology, environmental science, and ecology, to name a few. Based on my experience teaching students from these and similar majors, I argue that the field of environmental ethics has much to teach these students. They come to me with pent-up questions and a feeling that more is needed to fully engage in their subjects, and (...)
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  • Philosophical issues in ecology: Recent trends and future directions.Mark Colyvan, William Grey, Paul E. Griffiths, Jay Odenbaugh, Stefan Linquist & Hugh P. Possingham - 2009 - Ecology and Society 14 (2).
    Philosophy of ecology has been slow to become established as an area of philosophical interest, but it is now receiving considerable attention. This area holds great promise for the advancement of both ecology and the philosophy of science. Insights from the philosophy of science can advance ecology in a number of ways. For example, philosophy can assist with the development of improved models of ecological hypothesis testing and theory choice. Philosophy can also help ecologists understand the role and limitations of (...)
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  • Conservation Biology.Sahotra Sarkar - 2004 - Stanford Encyclopedia of Philosophy.
    Conservation biology emerged as an organized academic discipline in the United States in the 1980s though much of its theoretical framework was originally developed in Australia. Significant differences of approach in the two traditions were resolved in the late 1990s through the formulation of a consensus framework for the design and adaptive management of conservation area networks. This entry presents an outline of that framework along with a critical analysis of conceptual issues concerning the four theoretical problems that emerge from (...)
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  • Using Plant Biotechnology to Save ʻŌhiʻa Lehua: Western and Indigenous Conservation Perspectives.Yasha Rohwer - 2024 - Ethics, Policy and Environment 27 (3):414-427.
    The ʻōhiʻa lehua is an ecologically and culturally important Hawaiian tree. It is currently threatened by two exotic fungal pathogens. One potential way to save the tree may be to genetically modify it. In this paper I consider two different metaphysical perspectives on ʻōhiʻa lehua – western conservation and Indigenous Hawaiian conservation. I will argue that a possible intervention using plant biotechnology appears value-supporting from each perspective. Hence, it is a morally permissible strategy to pursue. Finally, I argue that given (...)
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  • Bottled Understanding: The Role of Lab Work in Ecology.Adrian Currie - 2020 - British Journal for the Philosophy of Science 71 (3):905-932.
    It is often thought that the vindication of experimental work lies in its capacity to be revelatory of natural systems. I challenge this idea by examining laboratory experiments in ecology. A central task of community ecology involves combining mathematical models and observational data to identify trophic interactions in natural systems. But many ecologists are also lab scientists: constructing microcosm or ‘bottle’ experiments, physically realizing the idealized circumstances described in mathematical models. What vindicates such ecological experiments? I argue that ‘extrapolationism’, the (...)
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  • Ecology.Sahotra Sarkar - 2008 - Stanford Encyclopedia of Philosophy.
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  • Owl vs Owl: Examining an Environmental Moral Tragedy.Jay Odenbaugh - 2022 - Philosophia 50 (5):2303-2317.
    In the United States, the northern spotted owl has declined throughout the Pacific Northwest even though its habitat has been protected under the Endangered Species Act. The main culprit for this decline is the likely human-facilitated invasion of the barred owl. The United States Fish and Wildlife Service conducted an experiment in which they lethally removed the barred owls from selected areas in Washington, Oregon, and California. In those locations, the northern spotted owl populations have stabilized and increased. Some have (...)
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  • The Edges and Boundaries of Biological Objects.Jay Odenbaugh & Matt H. Haber - 2009 - Biological Theory 4 (3):219-224.
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  • The Current Status of the Philosophy of Biology.Peter Takacs & Michael Ruse - 2013 - Science & Education 22 (1):5-48.
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  • Beyond the genome: community-level analysis of the microbial world.Iratxe Zarraonaindia, Daniel P. Smith & Jack A. Gilbert - 2013 - Biology and Philosophy 28 (2):261-282.
    The development of culture-independent strategies to study microbial diversity and function has led to a revolution in microbial ecology, enabling us to address fundamental questions about the distribution of microbes and their influence on Earth’s biogeochemical cycles. This article discusses some of the progress that scientists have made with the use of so-called “omic” techniques (metagenomics, metatranscriptomics, and metaproteomics) and the limitations and major challenges these approaches are currently facing. These ‘omic methods have been used to describe the taxonomic structure (...)
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  • Philosophical Issues in Ecology.James Justus - 2013 - In Kostas Kampourakis (ed.), The Philosophy of Biology: a Companion for Educators. Dordrecht: Springer. pp. 343–371.
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