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  1. Microbial neopleomorphism.W. Ford Doolittle - 2013 - Biology and Philosophy 28 (2):351-378.
    Our understanding of what microbes are and how they evolve has undergone many radical shifts since the late nineteenth century, when many still believed that bacteria could be spontaneously generated and most thought microbial “species” (if any) to be unstable and interchangeable in form and function (pleomorphic). By the late twentieth century, an ontology based on single cells and definable species with predictable properties, evolving like species of animals or plants, was widely accepted. Now, however, genomic and metagenomic data show (...)
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  • Return of the hopeful monster.Stephen Jay Gould - unknown
    ig Brother, the tyrant of George Orwell's 1984, directed his daily Two Minutes Hate against Emmanuel Goldstein, enemy of the people. When I studied evolutionary biology in graduate school during the mid 1960s, official rebuke and derision focused upon Richard Goldschmidt , a famous geneticist who, we were told, had gone astray. Although 1984 creeps up on us, I trust that the world will not be in Big Brother's grip by then. I do, however, predict that during this decade Goldschmidt (...)
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  • The history of ecology: Achievements and opportunities, Part two.Frank N. Egerton - 1985 - Journal of the History of Biology 18 (1):103-143.
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  • Before the “Black Box”: The Inputs and Outputs of Nineteenth-century Deep-sea Science.Rodolfo John Alaniz - 2020 - Science, Technology, and Human Values 45 (4):596-617.
    Nineteenth-century investigations of the deep sea provide a case study for black box science. Naturalists were forced to theorize about a space for which they had no direct sensory observations. This study traces the emergence of bathymetry and deep-sea biology and then analyzes how men of science dealt with the uncertainty associated with their black box practices. I argue that these investigators created multiple types of black boxes based on their uncertainties and that these black boxes did not operate equivalently. (...)
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  • History of Science and its Sociological Reconstructions.Steven Shapin - 1982 - History of Science 20 (3):157-211.
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  • Evolution Born of Moisture: Analogies and Parallels Between Anaximander’s Ideas on Origin of Life and Man and Later Pre-Darwinian and Darwinian Evolutionary Concepts.Radim Kočandrle & Karel Kleisner - 2013 - Journal of the History of Biology 46 (1):103-124.
    This study focuses on the origin of life as presented in the thought of Anaximander of Miletus but also points to some parallel motifs found in much later conceptions of both the pre-Darwinian German romantic science and post-Darwinian biology. According to Anaximander, life originated in the moisture associated with earth (mud). This moist environment hosted the first living creatures that later populated the dry land. In these descriptions, one can trace the earliest hints of the notion of environmental adaptation. The (...)
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  • The history of ecology: Achievements and opportunities, part one.Frank N. Egerton - 1983 - Journal of the History of Biology 16 (2):259-310.
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