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Phylogenetic structure of the prokaryotic domain : the primary kingdoms

In Francisco José Ayala & John C. Avise (eds.), Essential readings in evolutionary biology. Baltimore: The Johns Hopkins University Press (2014)

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  1. Molecular organisms: John Archibald, One Plus One Equals One: Symbiosis and the Origin of Complex Life. Oxford: Oxford University Press, 2014.Maureen A. O’Malley - 2016 - Biology and Philosophy 31 (4):571-589.
    Protistology, and evolutionary protistology in particular, is experiencing a golden research era. It is an extended one that can be dated back to the 1970s, which is when the molecular rebirth of microbial phylogeny began in earnest. John Archibald, a professor of evolutionary microbiology at Dalhousie University, focuses on the beautiful story of endosymbiosis in his book, John Archibald, One Plus One Equals One: Symbiosis and the Origin of Complex Life. However, this historical narrative could be treated as synecdochal of (...)
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  • Horizons of Difference: Rethinking Space, Place and Identity with Irigaray.Ruthanne Crapo Kim, Yvette Russell & Brenda Sharp (eds.) - 2022 - Albany, NY, USA: The State University of New York Press.
    Horizons of Difference offers twelve original essays inspired by Luce Irigaray's complex, nuanced critique of Western philosophy, culture, and metaphysics, and her call to rethink our relationship to ourselves and the world through sexuate difference. Contributors engage urgent topics in a range of fields, including trans feminist theory, feminist legal theory, film studies, critical race theory, social-political theory, philosophy of religion, environmental ethics, philosophical aesthetics, and critical pedagogy. In so doing, they aim to push the scope of Irigaray's work beyond (...)
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  • The discovery of archaea: from observed anomaly to consequential restructuring of the phylogenetic tree.Michael Fry - 2024 - History and Philosophy of the Life Sciences 46 (2):1-38.
    Observational and experimental discoveries of new factual entities such as objects, systems, or processes, are major contributors to some advances in the life sciences. Yet, whereas discovery of theories was extensively deliberated by philosophers of science, very little philosophical attention was paid to the discovery of factual entities. This paper examines historical and philosophical aspects of the experimental discovery by Carl Woese of archaea, prokaryotes that comprise one of the three principal domains of the phylogenetic tree. Borrowing Kuhn’s terminology, this (...)
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  • The Conditions of Emergence.Annu Dahiya - 2022 - In Ruthanne Crapo Kim, Yvette Russell & Brenda Sharp (eds.), Horizons of Difference: Rethinking Space, Place and Identity with Irigaray. Albany, NY, USA: The State University of New York Press. pp. 67-91.
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  • How Did the Eukaryotes Evolve?Marcello Barbieri - 2017 - Biological Theory 12 (1):13-26.
    The fossil record shows that the stromatolites built by cyanobacteria 2 and 3 billion years ago are virtually identical to those built by their modern descendants, which is just a part of much evidence revealing that bacteria have barely changed in billions of years. They appeared very early in the history of life and have conserved their complexity ever since. The eukaryotes, however, did the opposite. They repeatedly increased the complexity of their cells and eventually broke the cellular barrier and (...)
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  • From the Common Ancestor to the First Cells: The Code Theory.Marcello Barbieri - 2016 - Biological Theory 11 (2):102-112.
    The phylogenetic trees reconstructed from molecular data have led to the discovery that all living creatures belong to three primary kingdoms, or domains, because there are three types of cells in nature. The primary kingdoms are referred to as Archaea, Bacteria, and Eukaya, and their first representatives were the first modern cells that appeared on Earth. All known cells, on the other hand, contain a virtually universal genetic code, and this implies that the code evolved in a population of primitive (...)
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  • Uniting micro- with macroevolution into an Extended Synthesis: Reintegrating life’s natural history into evolution studies.Nathalie Gontier - 2015 - In Emanuele Serrelli & Nathalie Gontier (eds.), Macroevolution: Explanation, Interpretation and Evidence. Springer. pp. 227-278.
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  • Historical and epistemological perspectives on what Lateral Gene Transfer mechanisms contribute to our understanding of evolution.Nathalie Gontier - 2015 - In Reticulate Evolution: Symbiogenesis, Lateral Gene Transfer, Hybridization and Infectious Heredity. pp. 121-178.
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  • Reticulate evolution everywhere.Nathalie Gontier - 2015 - In Reticulate Evolution: Symbiogenesis, Lateral Gene Transfer, Hybridization and Infectious Heredity. pp. 1-40.
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