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  1. The Developmental Gene Hypothesis for Punctuated Equilibrium: Combined Roles of Developmental Regulatory Genes and Transposable Elements.Emily L. Casanova & Miriam K. Konkel - 2020 - Bioessays 42 (2):1900173.
    Theories of the genetics underlying punctuated equilibrium (PE) have been vague to date. Here the developmental gene hypothesis is proposed, which states that: 1) developmental regulatory (DevReg) genes are responsible for the orchestration of metazoan morphogenesis and their extreme conservation and mutation intolerance generates the equilibrium or stasis present throughout much of the fossil record and 2) the accumulation of regulatory elements and recombination within these same genes—often derived from transposable elements—drives punctuated bursts of morphological divergence and speciation across metazoa. (...)
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  • Scientific Discovery and Scientific Reputation: The Reception of Peyton Rous' Discovery of the Chicken Sarcoma Virus. [REVIEW]Eva Becsei-Kilborn - 2008 - Journal of the History of Biology 43 (1):111 - 157.
    This article concerns itself with the reception of Rous' 1911 discovery of what later came to be known as the Rous Sarcoma Virus (RSV). Rous made his discovery at the Rockefeller Institute for Medical Research which had been primarily established to conduct research into infectious diseases. Rous' chance discovery of a chicken tumor led him to a series of conjectures about cancer causation and about whether cancer could have an extrinsic cause. Rous' finding was received with some scepticism by the (...)
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  • Scientific Discovery and Scientific Reputation: The Reception of Peyton Rous’ Discovery of the Chicken Sarcoma Virus.Eva Becsei-Kilborn - 2010 - Journal of the History of Biology 43 (1):111-157.
    This article concerns itself with the reception of Rous’ 1911 discovery of what later came to be known as the Rous Sarcoma Virus. Rous made his discovery at the Rockefeller Institute for Medical Research which had been primarily established to conduct research into infectious diseases. Rous’ chance discovery of a chicken tumor led him to a series of conjectures about cancer causation and about whether cancer could have an extrinsic cause. Rous’ finding was received with some scepticism by the scientific (...)
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  • A tale of two biographies: the myth and truth of Barbara McClintock.Esha Shah - 2016 - History and Philosophy of the Life Sciences 38 (4).
    Evelyn Fox Keller wrote first biography of the Nobel Prize winning geneticist Barbara McClintock in which Keller discussed how McClintock felt being rejected by her peers in the 1950s because she questioned the dominant idea of the particulate gene and instead proposed that the genetic material jumped positions on the chromosome which indicated that the gene did not control but was controlled by the cellular environment. Keller’s story of McClintock’s life is an account of a woman scientist’s conception of science (...)
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  • Causal-role myopia and the functional investigation of junk DNA.Stefan Linquist - 2022 - Biology and Philosophy 37 (4):1-23.
    The distinction between causal role and selected effect functions is typically framed in terms of their respective explanatory roles. However, much of the controversy over functions in genomics takes place in an investigative, not an explanatory context. Specifically, the process of component-driven functional investigation begins with the designation of some genetic or epigenetic element as functional —i.e. not junk— because it possesses properties that, arguably, suggest some biologically interesting organismal effect. The investigative process then proceeds, in a bottom-up fashion, to (...)
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  • Determinism and Underdetermination in Genetics: Implications for Students’ Engagement in Argumentation and Epistemic Practices.María Pilar Jiménez-Aleixandre - 2014 - Science & Education 23 (2):465-484.
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  • All about levels: transposable elements as selfish DNAs and drivers of evolution.W. Ford Doolittle - 2022 - Biology and Philosophy 37 (4):1-20.
    The origin and prevalence of transposable elements may best be understood as resulting from “selfish” evolutionary processes at the within-genome level, with relevant populations being all members of the same TE family or all potentially mobile DNAs in a species. But the maintenance of families of TEs as evolutionary drivers, if taken as a consequence of selection, might be better understood as a consequence of selection at the level of species or higher, with the relevant populations being species or ecosystems (...)
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