The Ethics of Food Animal Production

Author(s):  
Paul B. Thompson

This chapter summarizes two strands of work on the ethics of food animal production. A dietetic tradition emphasizes the questions of whether and under what conditions consumption of animal protein is morally acceptable. For those who do not adopt some form of ethical vegetarianism, this approach has typically favored more traditional approaches to husbandry. A productionist tradition focuses on the potential for ethically motivated change in livestock production methods and policy. Beginning with the Brambell Committee’s five freedoms, this identifies indicators for multiple dimensions of food animal well-being, and recommends changes in existing industrial production systems. The multiple dimensions of welfare differ from one food animal species to another, and opinion is divided between members of the lay public, who tend to favor indicators relating to an animal’s ability to perform behaviors thought typical, normal, or natural, and scientific experts, who tend to favor cognitive affect and veterinary health.

2017 ◽  
pp. 105-130 ◽  
Author(s):  
W.A. Gebreyes ◽  
T. Wittum ◽  
G. Habing ◽  
W. Alali ◽  
M. Usui ◽  
...  

2020 ◽  
Vol 12 (17) ◽  
pp. 7071
Author(s):  
Gerald C. Shurson

Food waste has been a major barrier to achieving global food security and environmental sustainability for many decades. Unfortunately, food waste has become an even bigger problem in many countries because of supply chain disruptions during the COVID-19 pandemic and African Swine Fever epidemic. Although Japan and South Korea have been leaders in recycling food waste into animal feed, countries that produce much greater amounts of food waste, such as the United States and the European Union, have lagged far behind. Concerns about the risk of transmission of bacteria, prions, parasites, and viruses have been the main obstacles limiting the recycling of food waste streams containing animal-derived tissues into animal feed and have led to government regulations restricting this practice in the U.S. and EU. However, adequate thermal processing is effective for inactivating all biological agents of concern, perhaps except for prions from infected ruminant tissues. The tremendous opportunity for nitrogen and phosphorus resource recovery along with several other environmental benefits from recycling food waste streams and rendered animal by-products into animal feed have not been fully appreciated for their substantial contribution toward solving our climate crisis. It is time to revisit our global approach to improving economic and environmental sustainability by more efficiently utilizing the abundant supply of food waste and animal tissues to a greater extent in animal feed while protecting human and animal health in food animal production systems.


2020 ◽  
Vol 98 (Supplement_3) ◽  
pp. 123-123
Author(s):  
Tami Brown-Brandl

Abstract Sustainability in today’s animal production is more than economics – considerations need to include environmental concerns, animal well-being, hiring employees, worker safety and satisfaction, careful use of antibiotics, food safety, foreign animal disease, among others. In order to satisfy these pressures and concerns, new approaches should be carefully considered. In-depth evaluations of current animal facilities have and continue to identify new areas to apply technology. Research has shown promising results for implementing technology. The objective of this presentation is to provide an understanding of current and future technologies to help further discussion and develop creative solutions for sustainable animal production systems. Some of the specific areas that will be addressed include group housing systems for sows and grow-finishing swine systems. The development of precision animal management systems will create methods of capturing and utilizing real-time data to aid management decisions. Topics to be considered when developing these systems include sensor selection, method of data capture, and types of data processing. Current technologies that are being used in precision animal management systems include sound, images, and radio frequency identification (RFID) systems. The data processing methods for this type of data are continuing to change and improve, ensuring that the end product for precision animal management is information, not data alone. Among application examples will be the evaluation of individual animal data for pig weight, illness detection, and detection of lameness, and the errors associated with different components.


Vaccine ◽  
2015 ◽  
Vol 33 (1) ◽  
pp. 100-107 ◽  
Author(s):  
Douglas M. Heithoff ◽  
John K. House ◽  
Peter C. Thomson ◽  
Michael J. Mahan

2019 ◽  
Author(s):  
Ingeborg Björkman ◽  
Marta Röing ◽  
Jaran Eriksen ◽  
Cecilia Stålsby Lundborg

AbstractObjectiveTo describe how stakeholders at different levels in food animal production in Sweden work to contain antibiotic resistance, with a special focus on poultry production. The stakeholders’ perceptions of antibiotic resistance and awareness of the One Health concept were also studied.MethodsThis is an interview study with thirteen informants. They represent policymakers, trade organisations, and veterinarians and farmers in the poultry industry. Interview transcripts were analysed using content analysis. The analysis continued until a latent theme emerged, and then the content was rearranged in four domains.FindingsA latent theme “Working in unison” emerged, based on the consistency expressed by the informants when they discussed antibiotic resistance, use of antibiotics and food animal production methods. The theme was built on four domains, representing the content of the interviews: Knowledge and engagement; Cooperation; Animal health concept; and Development in balance with economic prerequisites. The work for healthy animals started in Sweden already in the 1920-ies and continued step by step in cooperation and with support from the government. In 1986 Sweden became the first country to ban antibiotics for growth promotion. Veterinarians were considered important drivers of processes by spreading knowledge and working close to the farmers. Farmers felt involved in the development of production methods. The One Health concept was well known among stakeholders working at national level but not among veterinarians in production or farmers.ConclusionsSweden has come far in work to contain antibiotic resistance in the animal sector by practicing restrictive use of antibiotics in food animal production. This practise is based on a long tradition of cooperation among stakeholders, from policymakers to farmers, and with a primary focus on animal health and welfare.


2021 ◽  
Vol 5 ◽  
Author(s):  
Nani Gopal Das ◽  
Mohammed R. Islam ◽  
Nathu Ram Sarker ◽  
Md. Abdul Jalil ◽  
Cameron E. F. Clark

Modern livestock selection is rapidly condensing the indigenous cattle gene pool. This trend limits the options for future genetic selection to benefit both animal well-being and farmer challenges. Here we reveal the potential of Red Chittagong cattle (RCC), a native genotype of Bangladesh, for tackling these current and pending challenges. Red Chittagong cattle are reddish in color and small in size with mature bulls and cows weighing 342 and 180 kg from birth weights of 16 and 14 kg, respectively. Whilst low mean levels of milk production of 618 L across a 228-day lactation are recorded so are high levels of milk protein (3.8%) and fat (4.8%) with offered feed types typically low in nutritive value, particularly crude protein. However, one in five cows under farm condition yield >1,000 L/lactation. Alongside high levels of milk protein and fat, other key features of this breed include resistance to common diseases and parasites with a high level of adaptation to agro-ecological conditions. As opposed to other indigenous breeds, there is currently high genetic variation in the RCC population, and associated variation in productive and reproductive traits highlighting the opportunity for development through long-term breeding programs alongside improved management conditions. Such efforts would enable this breed to become a global resource for tackling the challenges of modern animal production systems. In addition, further work is required to reveal the demographic distribution of the breed, potential production levels through the provision of improved diets and the mechanisms enabling disease resistance and digestibility of feeds.


Author(s):  
Lily N Edwards-Callaway ◽  
M Caitlin Cramer ◽  
Caitlin N Cadaret ◽  
Elizabeth J Bigler ◽  
Terry E Engle ◽  
...  

ABSTRACT Shade is a mechanism to reduce heat load providing cattle with an environment supportive of their welfare needs. Although heat stress has been extensively reviewed, researched, and addressed in dairy production systems, it has not been investigated in the same manner in the beef cattle supply chain. Like all animals, beef cattle are susceptible to heat stress if they are unable to dissipate heat during times of elevated ambient temperatures. There are many factors that impact heat stress susceptibility in beef cattle throughout the different supply chain sectors, many of which relate to the production system, i.e. availability of shade, microclimate of environment, and nutrition management. The results from studies evaluating the effects of shade on production and welfare are difficult to compare due to variation in structural design, construction materials used, height, shape, and area of shade provided. Additionally, depending on operation location, shade may or may not be beneficial during all times of the year, which can influence the decision to make shade a permanent part of management systems. Shade has been shown to lessen the physiologic response of cattle to heat stress. Shaded cattle exhibit lower respiration rates, body temperatures, and panting scores compared to un-shaded cattle in weather that increases the risk of heat stress. Results from studies investigating the provision of shade indicate that cattle seek shade in hot weather. The impact of shade on behavioral patterns is inconsistent in the current body of research, some studies indicating shade provision impacts behavior and other studies reporting no difference between shaded and un-shaded groups. Analysis of performance and carcass characteristics across feedlot studies demonstrated that shaded cattle had increased ADG, improved feed efficiency, HCW, and dressing percentage when compared to cattle without shade. Despite the documented benefits of shade, current industry statistics, although severely limited in scope, indicate low shade implementation rates in feedlots and data in other supply chain sectors do not exist. Industry guidelines and third party on-farm certification programs articulate the critical need for protection from extreme weather but are not consistent in providing specific recommendations and requirements. Future efforts should include: updated economic analyses of cost versus benefit of shade implementation, exploration of producer perspectives and needs relative to shade, consideration of shade impacts in the cow-calf and slaughter plant segments of the supply chain, and integration of indicators of affective (mental) state and preference in research studies to enhance the holistic assessment of cattle welfare.


2021 ◽  
pp. 053901842110191
Author(s):  
Loes Knaapen

When science is evaluated by bureaucrats and administrators, it is usually done by quantified performance metrics, for the purpose of economic productivity. Olof Hallonsten criticizes both the means (quantification) and purpose (economization) of such external evaluation. I share the concern that such neoliberal performance metrics are shallow, over-simplified and inaccurate, but differ in how best to oppose this reductionism. Hallonsten proposes to replace quantitative performance metrics with qualitative in-depth evaluation of science, which would keep evaluation internal to scientific communities. I argue that such qualitative internal evaluation will not be enough to challenge current external evaluation since it does little to counteract neoliberal politics, and fails to provide the accountability that science owes the public. To assure that the many worthy purposes of science (i.e. truth, democracy, well-being, justice) are valued and pursued, I argue science needs more and more diverse external evaluation. The diversification of science evaluation can go in many directions: towards both quantified performance metrics and qualitative internal assessments and beyond economic productivity to value science’s broader societal contributions. In addition to administrators and public servants, science evaluators must also include diverse counterpublics of scientists: civil society, journalists, interested lay public and scientists themselves. More diverse external evaluation is perhaps no more accurate than neoliberal quantified metrics, but by valuing the myriad contributions of science and the diversity of its producers and users, it is hopefully less partial and perhaps more just.


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