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  1. Intellectual property, plant breeding and the making of Mendelian genetics.Berris Charnley & Gregory Radick - 2013 - Studies in History and Philosophy of Science Part A 44 (2):222-233.
    Advocates of “Mendelism” early on stressed the usefulness of Mendelian principles for breeders. Ever since, that usefulness—and the favourable opinion of Mendelism it supposedly engendered among breeders—has featured in explanations of the rapid rise of Mendelian genetics. An important counter-tradition of commentary, however, has emphasized the ways in which early Mendelian theory in fact fell short of breeders’ needs. Attention to intellectual property, narrowly and broadly construed, makes possible an approach that takes both the tradition and the counter-tradition seriously, by (...)
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  • Breeding Without Mendelism: Theory and Practice of Dairy Cattle Breeding in the Netherlands 1900–1950. [REVIEW]Bert Theunissen - 2008 - Journal of the History of Biology 41 (4):637 - 676.
    In the 1940s and 1950s, Dutch scientists became increasingly critical of the practices of commercial dairy cattle breeders. Milk yields had hardly increased for decades, and the scientists believed this to be due to the fact that breeders still judged the hereditary potential of their animals on the basis of outward characteristics. An objective verdict on the qualities of breeding stock could only be obtained by progeny testing, the scientists contended: the best animals were those that produced the most productive (...)
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  • Hybrids, pure cultures, and pure lines: from nineteenth-century biology to twentieth-century genetics.Staffan Müller-Wille - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (4):796-806.
    Prompted by recent recognitions of the omnipresence of horizontal gene transfer among microbial species and the associated emphasis on exchange, rather than isolation, as the driving force of evolution, this essay will reflect on hybridization as one of the central concerns of nineteenth-century biology. I will argue that an emphasis on horizontal exchange was already endorsed by ‘biology’ when it came into being around 1800 and was brought to full fruition with the emergence of genetics in 1900. The true revolution (...)
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  • The professor and the pea: Lives and afterlives of William Bateson’s campaign for the utility of Mendelism.Gregory Radick - 2013 - Studies in History and Philosophy of Science Part A 44 (2):280-291.
    As a defender of the fundamental importance of Mendel’s experiments for understanding heredity, the English biologist William Bateson did much to publicize the usefulness of Mendelian science for practical breeders. In the course of his campaigning, he not only secured a reputation among breeders as a scientific expert worth listening to but articulated a vision of the ideal relations between pure and applied science in the modern state. Yet historical writing about Bateson has tended to underplay these utilitarian elements of (...)
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  • Early Mendelism and the subversion of taxonomy: epistemological obstacles as institutions.Staffan Müller-Wille - 2005 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 36 (3):465-487.
    This paper presents and discusses a series of hybridization experiments carried out by Nils Herman Nilsson-Ehle between 1900 and 1907 at a plant breeding station in Svalöf, Sweden. Since the late 1880s, the Svalöf station had been renowned for its ‘scientific’ breeding methods, which basically consisted of an elaborate system of record-keeping through which the offspring of individual plants were traced over generations while being meticulously described. This record system corresponded to a certain breeding technique and certain theoretical convictions . (...)
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  • Scientific Theory and Agricultural Practice: Plant Breeding in Germany from the Late 19th to the Early 20th Century. [REVIEW]Thomas Wieland - 2006 - Journal of the History of Biology 39 (2):309 - 343.
    The paper deals with the transformation of plant breeding from an agricultural practice into an applied academic science in the late 19th and early 20th centuries Germany. The aim is to contribute to the ongoing debate about the relationship between science and technology. After a brief discussion of this debate the first part of the paper examines how pioneers of plant breeding developed their breeding methods and commercially successful varieties. The focus here is on the role of scientific concepts and (...)
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  • Between the farm and the clinic: agriculture and reproductive technology in the twentieth century.Sarah Wilmot - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (2):303-315.
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  • Plants, power and development: founding the Imperial Department of Agriculture for the West Indies, 1880-1914.William K. Storey - 2004 - In Sheila Jasanoff (ed.), States of knowledge: the co-production of science and social order. New York: Routledge. pp. 109--30.
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  • Wizards and Devotees: On the Mendelian Theory of Inheritance and the Professionalization of Agricultural Science in Great Britain and the United States, 1880–1930.Paolo Palladino - 1994 - History of Science 32 (4):409-444.
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  • The political economy of applied research: Plant breeding in Great Britain, 1910–1940. [REVIEW]Paolo Palladino - 1990 - Minerva 28 (4):446-468.
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  • Science for whom? Agricultural development and the theory of induced innovation.Paolo Palladino - 1987 - Agriculture and Human Values 4 (2-3):53-64.
    Marxist social scientists have argued that the relationship between social and technical change is one of mutual interaction; innovation in the modes of production affects social organization, and social organization, in turn, has an impact on the development of novel modes of production. This consideration is of fundamental importance for the construction of any economic development policy. However, analyses of this critical relationship have been elaborated within a conceptual framework which most social scientists and policy makers who work within the (...)
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  • The Role of the Vilmorin Company in the Promotion and Diffusion of the Experimental Science of Heredity in France, 1840–1920.Jean Gayon & Doris T. Zallen - 1998 - Journal of the History of Biology 31 (2):241 - 262.
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  • Mendelism, Plant Breeding and Experimental Cultures: Agriculture and the Development of Genetics in France. [REVIEW]Christophe Bonneuil - 2006 - Journal of the History of Biology 39 (2):281 - 308.
    The article reevaluates the reception of Mendelism in France, and more generally considers the complex relationship between Mendelism and plant breeding in the first half on the 20th century. It shows on the one side that agricultural research and higher education institutions have played a key role in the development and institutionalization of genetics in France, whereas university biologists remained reluctant to accept this approach on heredity. But on the other side, plant breeders, and agricultural researchers, despite an interest in (...)
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  • Mr. Blakeslee Builds His Dream House: Agricultural Institutions, Genetics, and Careers 1900–1915. [REVIEW]Barbara A. Kimmelman - 2006 - Journal of the History of Biology 39 (2):241 - 280.
    Between 1907 and 1915 Albert Francis Blakeslee transformed both himself and the Connecticut Agricultural College at Storrs into things neither had been at the beginning of the century. Using the varied commitments of the agricultural college and experiment station at which he worked as resources with which to build his career, Blakeslee began as a botanist and instructor in botany and ended as a geneticist and teacher of genetics. Moreover, he left behind at Storrs a legacy of genetic research and (...)
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  • The plant breeding industry after pure line theory: Lessons from the National Institute of Agricultural Botany.Dominic Berry - 2014 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 46 (1):25-37.
    In the early twentieth century, Wilhelm Johannsen proposed his pure line theory and the genotype/phenotype distinction, work that is prized as one of the most important founding contributions to genetics and Mendelian plant breeding. Most historians have already concluded that pure line theory did not change breeding practices directly. Instead, breeding became more orderly as a consequence of pure line theory, which structured breeding programmes and eliminated external heritable influences. This incremental change then explains how and why the large multi-national (...)
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