Results for 'GMO'

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  1. Gmo 2 - What is It and Why Do We Need It!?Dejan Donev - 2024 - Годишен зборник на Филозофскиот факултет/The Annual of the Faculty of Philosophy in Skopje 77 (1):9-42.
    Bioethical thinking regarding biotechnology should play an important rolein our lives, views and legislation. The main debates have been and still are over theregulation, safety and moral status of certain applications of modern biotechnology,such as GMOs. There are fears about the technology being autonomous without publiccontrol due to its strategic nature. Awareness of technological impact on modern life isbecoming more apparent as the application of biotechnology continues to develop. Howthen can we create a platform for handling biotechnology in a way (...)
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  2. The GMO Quandary and What It Means for Social Philosophy.Paul B. Thompson - 2014 - Social Philosophy Today 30:7-27.
    Agricultural crops developed using the tools of genetic engineering have become socially institutionalized in three ways that substantially compromise the inherent potential of plant transformation tools. The first is that when farming depends upon debt finance, farmers find themselves in a competitive situation such that efficiency-enhancing technology fuels a trend of bankruptcy and increasing scale of production. As efficiency increasing tools, GMOs are embedded in controversial processes of social change in rural economies. The United States, at least, has chosen not (...)
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  3.  32
    Non-GMO vs organic labels: purity or process guarantees in a GMO contaminated landscape.Carmen Bain & Theresa Selfa - 2017 - Agriculture and Human Values 34 (4):805-818.
    Since 2010, demand for non-GMO food products has grown dramatically. Two non-GMO labels dominate the market: USDA Organic and the Non-GMO Project Verified. However, the non-GMO status of Organic is not obvious from the label and many consumers are unaware of this. As sales of products carrying the Project’s non-GMO label have exploded, concern has increased among some Organic proponents that demand for non-GMO threatens the organic market. In response, both sides are seeking to build legitimacy and authority for their (...)
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  4.  23
    The GMO-Nanotech (Dis)Analogy?W. D. Kay & Ronald Sandler - 2006 - Bulletin of Science, Technology and Society 26 (1):57-62.
    The genetically-modified-organism (GMO) experience has been prominent in motivating science, industry, and regulatory communities to address the social and ethical dimensions of nanotechnology. However, there are some significant problems with the GMO-nanotech analogy. First, it overstates the likelihood of a GMO-like backlash against nanotechnology. Second, it invites misconceptions about the reasons for public engagement and social and ethical issues research as well as their appropriate roles in nanotech research, development, application, commercialization, and regulatory processes. After an explication of the standard (...)
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  5.  72
    Pragmatist Philosophical Reflections on GMOs.Lisa Heldke - 2015 - Journal of Agricultural and Environmental Ethics 28 (5):817-836.
    This essay examines the public debate about the agricultural biotechnologies known as genetically modified organisms, as that debate is being carried out in its most dichotomizing forms in the United States. It attempts to reveal the power of sharply dichotomous thinking, as well as its limits. The essay draws on the work of Michel Serres, who uses the concept of the parasite to reconstruct or reframe fundamental dichotomies in western philosophy; it attempts a similar reframing of the public debates about (...)
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  6.  27
    GMOs and political stance: global GMO regulation, certification, labeling, and consumer preferences.Muhammad Amjad Nawaz, Gyuhwa Chung, Kirill Sergeyevich Golokhvast & Aristidis M. Tsatsakis (eds.) - 2023 - San Diego, CA, United States: Academic Press, an imprint of Elsevier.
    GMOS and Political Stance: Global GMO Regulation, Certification, Labeling, and Consumer Preferences provides a foundational-to-current challenges resource for those involved in developing and applying regulations to these important resources. Beginning with basics of GMOs, the book first familiarizes the reader with the history, economic status, associated risks, global politics, and socio-economics of GMOs. From exploring the necessity of GMO regulations with the existing GMO technology as well as new gene editing technologies to discussion by GMO regulations experts from different continents (...)
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  7. GMOs, Future Generations, and the Limits of the Precautionary Principle.Duncan Purves - 2015 - Social Philosophy Today 31:99-109.
    The Precautionary Principle is frequently invoked as a guiding principle in environmental policy. In this article, I raise a couple of problems for the application of the Precautionary Principle when it comes to policies concerning Genetically Modified Organisms (GMOs). First, I argue that if we accept Stephen Gardiner’s sensible conditions under which it is appropriate to employ the Precautionary Principle for emerging technologies, it is unclear that GMOs meet those conditions. In particular, I contend that GM crops hold the potential (...)
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  8.  54
    Deliberation on GMOs: A Study of How a Citizens’ Jury Affects the Citizens’ Attitudes.Marianne Aasen & Arild Vatn - 2013 - Environmental Values 22 (4):461-481.
    Deliberative processes provide an important alternative input to environmental politics as they may, in contrast to often used market simulations, provide an arena for 1) discussion of lay participants’ values, 2) articulating arguments grounded in other values than consequentialistic, and 3) capturing weakly comparable values. A case study of a Citizens’ Jury (CJ) on genetically modified plants was used to investigate how the framing of the process affected the attitude formation among the citizens. The formal set up of this specific (...)
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  9. GMOs and global justice: Applying global justice theory to the case of genetically modified crops and foods.K. Høyer Toft - 2012 - Journal of Agricultural and Environmental Ethics 25 (2):223-237.
     
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  10. GMOs? Not So Fast.Roberta L. Millstein - 2015 - Common Reader: A Journal of the Essay 1:33-46.
    Given the role of values in the deployment of GMOs, given the lack of mandatory and long-term testing of GMOs with outside oversight, and given the demonstrated environmental harms, it is not anti-science to want to GMOs labelled as GMOs. People who would like to avoid GMOs, whether out of concerns for potential health harms or concerns over actual environmental harms, are not being allowed to judge the risks and make choices for themselves and their families. For these reasons—so that (...)
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  11. GMOs: Non-Health Issues.Daniel Hicks & Roberta L. Millstein - 2016 - In B. Thompson Paul & Kaplan David (eds.), Encyclopedia of Food and Agricultural Ethics (Second Edition). Springer. pp. 1-11.
    The controversy over genetically modified [GM] organisms is often framed in terms of possible hazards for human health. Articles in a previous volume of this *Encyclopedia* give a general overview of GM crops [@Mulvaney2014] and specifically examine human health [@Nordgard2014] and labeling [@Bruton2014] issues surrounding GM organisms. This article explores several other aspects of the controversy: environmental concerns, political and legal disputes, and the aim of "feeding the world" and promoting food security. Rather than discussing abstract, hypothetical GM organisms, this (...)
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  12.  15
    GMOs and Sustainable Agriculture.Sheldon Krimsky - 2023 - In Erick Valdés & Juan Alberto Lecaros (eds.), Handbook of Bioethical Decisions. Volume I: Decisions at the Bench. Springer Verlag. pp. 763-774.
    The introduction of genetically engineered crops in agriculture in the mid-1990s has been heralded as the advent of the Second Green Revolution. Among the expectations were high yields, fewer inputs like pesticides, and new nutritionally enhanced foods. Around the same period that traditional breeding was eclipsed by molecular breeding, the concept of sustainability was introduced into the working lexicon of many disciplines, practitioners, and corporations. This chapter discusses the principles of sustainability and their applications to agriculture, evaluates specific GMOs against (...)
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  13. GMOs and Global Justice: Applying Global Justice Theory to the Case of Genetically Modified Crops and Food. [REVIEW]Kristian Høyer Toft - 2012 - Journal of Agricultural and Environmental Ethics 25 (2):223-237.
    Proponents of using genetically modified (GM) crops and food in the developing world often claim that it is unjust not to use GMOs (genetically modified organisms) to alleviate hunger and malnutrition in developing countries. In reply, the critics of GMOs claim that while GMOs may be useful as a technological means to increase yields and crop quality, stable and efficient institutions are required in order to provide the benefits from GMO technology. In this debate, the GMO proponents tend to rely (...)
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  14.  21
    GMO sapiens: the life-changing science of designer babies.Paul Knoepfler - 2016 - New Jersey: World Scientific.
    An introduction to playing god -- The birth and explosive growth of GMOs -- Human cloning -- Messing with mother nature : the first GMO sapiens -- Build-a-baby better via genetics -- DIY guide to creating GMO sapiens -- Eugenics and transhumanism -- Cultural views on human genetic modification -- GMO sapiens today and tomorrow.
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  15.  29
    GMO, Food Sovereignty and Crisis of Life.Moon-Jeong Kim - 2016 - Environmental Philosophy 22:63-91.
  16.  21
    An Illusory Consensus behind GMO Health Assessment.Sheldon Krimsky - 2015 - Science, Technology, and Human Values 40 (6):883-914.
    Prominent scientists and policymakers assert with confidence that there is no scientific controversy over the health effects of genetically modified organisms —that genetically modified crops currently in commercial use and those yet to be commercialized are inherently safe for human consumption and do not have to be tested. Those who disagree are cast as “GMO deniers.” This article examines scientific reviews and papers on GMOs, compares the findings of professional societies, and discusses the treatment of scientists who have reported adverse (...)
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  17.  43
    No alternative? The politics and history of non-GMO certification.Robin Jane Roff - 2009 - Agriculture and Human Values 26 (4):351-363.
    Third-party certification is an increasingly prevalent tactic which agrifood activists use to “help” consumers shop ethically, and also to reorganize commodity markets. While consumers embrace the chance to “vote with their dollar,” academics question the potential for labels to foster widespread political, economic, and agroecological change. Yet, despite widespread critique, a mounting body of work appears resigned to accept that certification may be the only option available to activist groups in the context of neoliberal socio-economic orders. At the extreme, Guthman (...)
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  18.  7
    Gmos.Paul B. Thompson - 2021 - In Deborah C. Poff & Alex C. Michalos (eds.), Encyclopedia of Business and Professional Ethics. Springer Verlag. pp. 1003-1008.
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  19. GMOs and Development.E. J. DaSilva - 2006 - International Journal of Bioethics 17 (4).
     
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  20.  40
    Esej o znanosti i GMO-u.Valerije Vrček - 2010 - Filozofska Istrazivanja 30 (1-2):231-235.
    Prikazani su elementi koji olakšavaju orijentaciju u prostoru »kontaminiranom« znanstvenim prisvajanjem istina, vrijednosti, »krunskih« dokaza i konačnih interpretacija. Iz spektra modernih disciplina »izvučena« je molekulska biologija kao model za razumijevanje mehanizama kojim prirodne znanosti privatiziraju sadržaje i područja koja pripadaju široj zajednici, odnosno čitavome društvu. U bogatome arsenalu molekulske biologije posebno se ističe metoda rekombinantne DNK koja je omogućila razvoj GMO-a.GMO-i su »klasična« znanstvena kontroverza u kojoj jedna strana prepoznaje »mutante« kao nepotrebne i defektne izume, dok ih druga strana predstavlja (...)
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  21. “Antiscience Zealotry”? Values, Epistemic Risk, and the GMO Debate.Justin B. Biddle - 2018 - Philosophy of Science 85 (3):360-379.
    This article argues that the controversy over genetically modified crops is best understood not in terms of the supposed bias, dishonesty, irrationality, or ignorance on the part of proponents or critics, but rather in terms of differences in values. To do this, the article draws on and extends recent work of the role of values and interests in science, focusing particularly on inductive risk and epistemic risk, and it shows how the GMO debate can help to further our understanding of (...)
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  22.  54
    Review of Paul Knoepfler, GMO Sapiens: The Life-Changing Science of Designer Babies. [REVIEW]I. Glenn Cohen - 2016 - American Journal of Bioethics 16 (9):1-3.
    GMO Sapiens: The Life-Changing Science of Designer Babies, by Paul Knoepfler, is a very readable introduction for the general lay public to genetically modified crops, CRISPR-Cas9, gene therapy, an...
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  23.  87
    Shopping for change? Neoliberalizing activism and the limits to eating non-GMO.Robin Jane Roff - 2007 - Agriculture and Human Values 24 (4):511-522.
    While the cultivation of genetically modified organisms (GMO) and the spread of genetically engineered (GE) foods has gone largely unnoticed by the majority of Americans, a growing number of vocal civil society groups are opposing the technology and with it the entire conventional system of food provision. As with other alternative food movements, non-GMO activists focus on changing individual consumption habits as the best means of altering the practices of food manufacturers and thereby what and how food is produced. In (...)
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  24.  32
    Essentialism, Vitalism, and the GMO Debate.Veronika Szántó - 2018 - Philosophy and Technology 31 (2):189-208.
    There has been a long-standing opposition to genetically modified organisms worldwide. Some studies have tried to identify the deep-lying philosophical, conceptual as well as psychological motivations for this opposition. Philosophical essentialism, psychological essentialism, and vitalism have been proposed as possible candidates. I approach the plausibility of the claim that these notions are related to GMO opposition from a historical perspective. Vitalism and philosophical essentialism have been associated with anti-GMO stance on account of their purported hostility to species and organismic mutability. (...)
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  25.  61
    The Ethics of Introducing GMOs into sub‐Saharan Africa: Considerations from the sub‐Saharan African Theory of Ubuntu.Ana Komparic - 2015 - Bioethics 29 (9):604-612.
    A growing number of countries in sub-Saharan Africa are considering legalizing the growth of genetically modified organisms. Furthermore, several projects are underway to develop transgenic crops tailored to the region. Given the contentious nature of GMOs and prevalent anti-GMO sentiments in Africa, a robust ethical analysis examining the concerns arising from the development, adoption, and regulation of GMOs in sub-Saharan Africa is warranted. To date, ethical analyses of GMOs in the global context have drawn predominantly on Western philosophy, dealing with (...)
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  26.  20
    Competing food sovereignties: GMO-free activism, democracy and state preemptive laws in Southern Oregon.Rebecka Daye - 2020 - Agriculture and Human Values 37 (4):1013-1025.
    Indicators of food sovereignty and food democracy center on people having the right and ability to define their food polices and strategies with respect to food culture, food security, sustainability and use of natural resources. Yet food sovereignty, like democracy, exists on multiple and competing scales, and policymakers and citizens often have different agendas and priorities. In passing a ban on the use of genetically-modified seeds in agriculture, Jackson County, Oregon has obtained some measure of food sovereignty. Between 2016 and (...)
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  27.  83
    Does Controversial Science Call For Public Participation? The Case Of Gmo Skepticism.Andreas Christiansen, Karin Jonch-Clausen & Klemens Kappel - 2017 - Les ateliers de l'éthique/The Ethics Forum 12 (1):26-50.
    Andreas Christiansen,Karin Jonch-Clausen,Klemens Kappel | : Many instances of new and emerging science and technology are controversial. Although a number of people, including scientific experts, welcome these developments, a considerable skepticism exists among members of the public. The use of genetically modified organisms is a case in point. In science policy and in science communication, it is widely assumed that such controversial science and technology require public participation in the policy-making process. We examine this view, which we call the Public (...)
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  28.  36
    Pragmatist Philosophical Reflections on GMOs.Payam Moula & Per Sandin - 2015 - Journal of Agricultural and Environmental Ethics 28 (5):817-836.
    This essay examines the public debate about the agricultural biotechnologies known as genetically modified organisms, as that debate is being carried out in its most dichotomizing forms in the United States. It attempts to reveal the power of sharply dichotomous thinking, as well as its limits. The essay draws on the work of Michel Serres, who uses the concept of the parasite to reconstruct or reframe fundamental dichotomies in western philosophy; it attempts a similar reframing of the public debates about (...)
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  29.  28
    A Framework for Thawing Value Conflicts in the GMO Debate.Samantha Noll - 2020 - In Shannon Vallor (ed.), The Oxford Handbook of Philosophy of Technology. New York, NY: Oxford University Press, Usa. pp. 50-90.
    This chapter explores the ethical dimensions of one of the most contentious applications of agricultural biotechnology: the genetic modification of food products. While the development of genetically modified breeds and seeds has many advantages, the public has consistently expressed worries concerning the adoption of genetically modified organisms. The first section of this chapter uses the AquAdvantage salmon debate in the United States to highlight the most common concerns discussed in current labeling debates, from the potential for environmental harm to health (...)
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  30.  99
    Say No to GMOs! (Genetically Modified Organisms).Gene Thomas & Chris Picone - unknown
    Time was when you could bite a tomato and not ingest fish genes. Time was when you could eat french fries and just worry about the fat and salt, not the bacterial genes that produce insecticides in the potato. Those times are over, thanks to corporate control over both genetic engineering and the lack of food-labeling. Unless you are a “hard core” consumer of organic foods, you eat genetically engineered foods everyday. While 80-90% of US consumers believe genetically engineered foods (...)
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  31.  59
    The US' food and drug administration, normativity of risk assessment, gmos, and american democracy.Zahra Meghani - 2009 - Journal of Agricultural and Environmental Ethics 22 (2):125-139.
    The process of risk assessment of biotechnologies, such as genetically modified organisms (GMOs), has normative dimensions. However, the US’ Food and Drug Administration (FDA) seems committed to the idea that such evaluations are objective. This essay makes the case that the agency’s regulatory approach should be changed such that the public is involved in deciding any ethical or social questions that might arise during risk assessment of GMOs. It is argued that, in the US, neither aggregative nor deliberative (representative) democracy (...)
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  32.  21
    Contested fields: an analysis of anti-GMO politics on Hawai’i Island.Clare Gupta - 2018 - Agriculture and Human Values 35 (1):181-192.
    This paper details the evolution of activism against genetically modified organisms on the Big Island of Hawai’i. It offers an explanation for the ability of rural residents on the Big Island to pass anti-GMO legislation while other states and communities have tried and failed. I argue that the Big Island’s recent anti-GMO legislative success is due to the articulation of interests and actions between settlers to Hawai’i and Native Hawaiian community members seeking to protect Native Hawaiian rights. Tracing the history (...)
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  33.  23
    Changing Social Order and the Quest for Justification: GMO Controversies in Japan.Fumiaki Suda & Tomiko Yamaguchi - 2010 - Science, Technology, and Human Values 35 (3):382-407.
    Over the past decade, genetically modified organisms have come to be viewed as problematic in Japan, as evidenced by a large number of newspaper articles covering questions ranging from the unknown ecological impact of GMOs to uncertainty about food safety, and by the fact that a number of consumers’ groups have organized activities including demonstrations at the experiment stations and the submission of petitions to the government. Against this backdrop, this article attempts to understand the changing interpretation of the perceived (...)
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  34.  18
    Responsible Living: Explorations in Applied Buddhist Ethics — Animals, Environment, GMOs, Digital Media, by Ron Epstein.Nick Swann - 2019 - Buddhist Studies Review 36 (1):135-137.
    Responsible Living: Explorations in Applied Buddhist Ethics — Animals, Environment, GMOs, Digital Media, by Ron Epstein. Buddhist Text Translation Society, 2018. 179pp. Pb. $12, ISBN-13: 9781601030993. Ebook $5, ISBN-13: 9781601031006.
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  35.  21
    Technology Neutrality in European Regulation of GMOs.Per Sandin, Christian Munthe & Karin Edvardsson Björnberg - 2022 - Ethics, Policy and Environment 25 (1):52-68.
    In order to responsibly protect certain cherished values, for instance, human or environmental health, privacy, or ‘human dignity’, societies see a need for oversight, guidance and regulation of de...
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  36.  63
    The Multidimensionality of Environmental Problems: The GMO Controversy and the Limits of Scientific Materialism.Michael S. Carolan - 2008 - Environmental Values 17 (1):67 - 82.
    This paper argues for a broader understanding of complexity; an understanding that speaks to the multidimensionality of environmental problems. As argued, environmental problems rest upon ontological, epistemological, and moral claims; they rest, in other words, upon statements about what is, knowledge, and what ought to be, respectively. To develop and illustrate this argument, the GMO (genetically modified organism) controversy is broken down according to these three dimensions. Dissecting environmental problems in this manner reveals why we cannot look solely toward the (...)
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  37.  86
    The precautionary principle: Scientific uncertainty and omitted research in the context of GMO use and release. [REVIEW]Anne Ingeborg Myhr & Terje Traavik - 2002 - Journal of Agricultural and Environmental Ethics 15 (1):73-86.
    Commercialization of genetically modified organisms (GMOs) have sparked profound controversies concerning adequate approaches to risk regulation. Scientific uncertainty and ambiguity, omitted research areas, and lack of basic knowledge crucial to risk assessmentshave become apparent. The objective of this article is to discuss the policy and practical implementation of the Precautionary Principle. A major conclusion is that the void in scientific understanding concerning risks posed by secondary effects and the complexity ofcause-effect relations warrant further research. Initiatives to approach the acceptance or (...)
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  38.  79
    The case for regulating intragenic GMOs.A. Wendy Russell & Robert Sparrow - 2008 - Journal of Agricultural and Environmental Ethics 21 (2):153-181.
    This paper discusses the ethical and regulatory issues raised by ‘‘intragenics’’ – organisms that have been genetically modified using gene technologies, but that do not contain DNA from another species. Considering the rapid development of knowledge about gene regulation and genomics, we anticipate rapid advances in intragenic methods. Of regulatory systems developed to govern genetically modified organisms (GMOs) in North America, Europe, Australia, and New Zealand, the Australian system stands out in explicitly excluding intragenics from regulation. European systems are also (...)
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  39.  19
    European and Italian regulations for food safety, the deliberate release into the environment of GMOs and the procedures for their labelling and traceability.Arianna Greco & Rosella Ciliberti - 2003 - Global Bioethics 16 (1):17-26.
    Is it necessary to contrast the spreading process of genetic engineering in the agri-food stuff sector? Can EU rules really consider the impact of this brand new technologies on biology and, consequently, on public health? Despite the general trend, a firm opposition is what is happening in some Regions of Italy, where GMOs production and placing on the market are foibidden.
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  40.  35
    Localizing control: Mendocino County and the ban on GMOs. [REVIEW]Marygold Walsh-Dilley - 2009 - Agriculture and Human Values 26 (1-2):95-105.
    In March, 2004, the rural northern California county of Mendocino voted to ban the propagation of all genetically modified organisms (GMOs). This county was the first, and only, U.S. region to adopt such a ban despite widespread activism against biotechnology. Using a civic agriculture perspective, this article explores how local actors in this small county were able to take on the agri-biotechnology industry. I argue that by localizing the issue, the citizens of Mendocino County were able to ignite a highly (...)
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  41.  21
    Normative Concepts of Nature in the GMO Protest. A Qualitative Content Analysis of Position Papers Criticizing Green Genetic Engineering in Germany.Christian Dürnberger - 2019 - Food Ethics 4 (1):49-66.
    New Breeding Techniques such as CRISPR-Cas9 are revolutionizing plant breeding and food production. Experts believe that the social debate about these technologies could be similar to those on green genetic engineering: emotional and highly controversial. Future debate about Genome Editing could benefit from a better understanding of the GMO (genetically modified organism) controversy. Against this background, this paper (a) presents results of a content analysis of position papers criticizing green genetic engineering in Germany. In particular, (b) it focuses on the (...)
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  42.  34
    OPINION PIECE Counterproductive consequences of ‘anti-GMO’ activism.Giovanni Tagliabue - 2018 - Ethics in Science and Environmental Politics 18:61-74.
  43.  15
    Coexistence or Conflict? A European Perspective on GMOs and the Problem of Liability.Christopher P. Rodgers - 2007 - Bulletin of Science, Technology and Society 27 (3):233-250.
    In March 2004, the U.K. government announced its intention to grant limited authorization for the growing of commercial genetically modified (GM) crops. This article reviews the potential liabilities that may arise from GM cropping, for environmental damage and for economic losses claimed by non-GM producers. It considers the application of the European Community (EC) Environmental Liability Directive of 2004 to genetically modified organisms (GMO) releases, and the proposed statutory scheme for the coexistence of GM and non-GM agriculture in England and (...)
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  44.  50
    Developing and Assessing New Technology: Popper, Monsanto and GMOs.Jeremy K. Hall & Michael J. C. Martin - 2003 - Philosophy of Management 3 (2):13-22.
    The UK launch of the Science Enterprise Challenge in 1999 has stimulated interest in the evolutions of science-based firms and this paper argues that Popper’s seminal diverse contributions to philosophy are directly relevant to them. It begins by commenting on the applications of both Kuhn’s and Popper’s concepts to technological (as against) scientific evolutions. It then suggests how Popper’s approaches are applicable to the development and assessment of new technology within the framework of Freeman’s stakeholders approach. Monsanto’s development of GMOs (...)
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  45.  24
    Gendered Representations in Hawai‘i's Anti-Gmo Activism.Amanda Shaw - 2016 - Feminist Review 114 (1):48-71.
    The aim of this article is to analyse some of the representations of intersectional gender that materialise in activism against genetically modified organisms (GMOs). It uses the case of Hawai'i as a key node in global transgenic seed production and hotspot for food, land and farming controversies. Based on ethnographic work conducted since 2012, the article suggests some of the ways that gender is represented within movements against GMOs by analysing activist media representations. The article shows how gender, understood intersectionally, (...)
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  46.  43
    The Precautionary Principle in EU Regulation of GMOs: Socio-Economic Considerations and Ethical Implications of Biotechnology.Artem Anyshchenko - 2019 - Journal of Agricultural and Environmental Ethics 32 (5):855-872.
    Law is often linked to ethics and morality. Regulations of genetically modified organisms ensue from a discussion on how well the law is composed to accommodate ethical considerations. The precautionary principle and biotechnology have undeniable moral connotations. Besides, the principle has socio-economic implications. The application of the precautionary principle in plant breeding should be legally justified on the basis of the best available evidence. On the other hand, scientific information cannot provide all the necessary information on which a risk management (...)
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  47.  44
    Looking for Moral Responsibility in Ownership: A Way to Deal with Hazards of GMOs.Zoë Robaey - 2015 - Journal of Agricultural and Environmental Ethics 28 (1):43-56.
    Until now, the debates around genetically modified seeds in agriculture have converged towards two main issues. The first is about hazards that this new technology brings about, and the second is about the ownership of seeds and the distribution of their economic benefits. In this paper, I explore an underdeveloped topic by linking these two issues: how ownership shapes the distribution of moral responsibility for the potential hazards of genetically modified seeds. Indeed, while ownership is debated in terms of economic (...)
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  48.  81
    Transferring Moral Responsibility for Technological Hazards: The Case of GMOs in Agriculture.Zoë Robaey - 2016 - Journal of Agricultural and Environmental Ethics 29 (5):767-786.
    The use of genetically modified organisms in agriculture makes great promises of better seeds, but also raises many controversies about ownership of seeds and about potential hazards. I suggest that owners of these seeds bear the responsibility to do no harm in using these seeds. After defining the nature of this responsibility, this paper asks, if ownership entails moral responsibility, and ownership can be transferred, then how is moral responsibility transferred? Building on the literature on use plans, I suggest five (...)
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  49.  44
    Why public participation in risk regulation? The case of authorizing GMO products in the European Union.Maria Paola Ferretti - 2007 - Science as Culture 16 (4).
    In recent years there has been renewed interest in the participation of lay people in regulatory procedures. The debate peaked in the 1980s with the anti-nuclear movements and again more recently as a reaction to the food scandals of the mid-1990s. In the wake of the bovine spongiform encephalopathy (BSE) crisis there has been a proliferation of European Community rules on the production, processing and retailing of food products, along with the multiplication of scientific committees in order to cope with (...)
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  50.  43
    What Can Nanotechnology Learn From Biotechnology?: Social and Ethical Lessons for Nanoscience From the Debate Over Agrifood Biotechnology and Gmos.Kenneth H. David & Paul B. Thompson (eds.) - 2008 - Elsevier/Academic Press.
    Printbegrænsninger: Der kan printes kapitelvis.
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