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7 min read•june 18, 2024
Pooja Kalyan
Riya Patel
Pooja Kalyan
Riya Patel
The nature of modern agriculture and our food-production techniques are rapidly changing, which will be a main focus in this section. We will look at the debates surrounding the use of agricultural innovations, what influences food production and consumption, the challenges of providing food for all, and economic factors that affect food-production.
*These innovations have raised questions about their sustainability, soil and water usage, effect on biodiversity, and extensive use of chemicals.
Biotechnology is the use of living organisms or their products to develop or make products or technologies. Biotechnology has a wide range of applications, including agriculture, medicine, environmental management, and industry.
In agriculture, biotechnology is used to develop crops that are resistant to pests and diseases, tolerate drought and other environmental stresses, and have improved nutritional content. This can help to increase crop yields and reduce the need for chemical inputs, such as pesticides and fertilizers.
In medicine, biotechnology is used to develop new drugs, diagnostic tests, and therapies. This can help to improve the treatment of diseases and improve public health.
In environmental management, biotechnology is used to develop technologies that help to clean up contaminated sites, reduce pollution, and conserve natural resources.
In industry, biotechnology is used to produce a variety of products, such as biofuels, bioplastics, and industrial enzymes.
Some examples of biotechnology include genetic engineering, fermentation, and tissue culture. Biotechnology has the potential to revolutionize many different fields, but it is also a controversial area, and there are concerns about the safety and ethical implications of some biotechnology applications.
GMOs, or genetically modified organisms, are living organisms that have had their DNA modified using biotechnology techniques. The genetic material of a GMO is altered in a way that does not occur naturally, usually by adding or removing specific genes.
GMOs are used in a variety of applications, including agriculture, medicine, and industry. In agriculture, GMOs are used to develop crops that are resistant to pests and diseases, tolerate environmental stresses, and have improved nutritional content. This can help to increase crop yields and reduce the need for chemical inputs, such as pesticides and fertilizers.
GMOs are controversial, and there are ongoing debates about their safety, environmental impacts, and ethical implications. Some people are concerned about the potential risks of GMOs, such as the potential for unintended consequences and the potential for harm to human health or the environment. Others argue that GMOs can have many benefits, such as increasing food security and reducing the environmental impact of agriculture.
The use of GMOs is regulated by governments around the world, and there are labeling requirements for food products that contain GMOs in some countries. However, there are different approaches to regulating GMOs, and the regulations vary by country.
Environmental hazards
Unwanted gene transfer to other organisms
Unintended harm to other organisms Human health risk
Unknown or unintended health effects
Economic concerns Patents by agrichemical companies
GMOs are more expensive to produce and take longer to bring into the market
Aquaculture is the farming of aquatic organisms, such as fish, shellfish, and seaweed. It is an important source of food and other products, such as fishmeal, fish oil, and pearls.
Aquaculture can be practiced in a variety of aquatic environments, including fresh water, salt water, and brackish water. There are many different species of aquatic organisms that are farmed, including finfish, shellfish, seaweed, and algae.
Aquaculture can be carried out in a variety of systems, including ponds, tanks, cages, and raceways. It can be practiced on a small scale, such as in backyard ponds, or on a large scale, such as in offshore cages.
Aquaculture is an important source of food and other products, and it can help to meet the growing demand for seafood. However, it is also a controversial industry, and there are concerns about the environmental impacts of aquaculture, such as pollution, habitat destruction, and the spread of diseases and parasites. There are also concerns about the welfare of farmed aquatic animals and the use of wild fish as feed in some aquaculture systems.
🎥 Watch: AP HUG - Rural Land Use
What we choose to eat greatly affects food production and consumption patterns, and there are plenty of “movements” related to individual food choices that influence these patterns, such as urban farming, community-supported agriculture (CSA), organic farming, value added specialty crops, fair trade, local-food movements, and dietary shifts.
*You should know the challenges of trying to feed an entire world’s worth of population (7 billion people is a lot!)
There are several economic processes that can affect food production, including:
To put it simply, you should know that the way food is produced is largely determined by the location of food-processing facilities, economies of scale, distribution systems, and government policies.
🎥 Watch: AP HUG - Development of Agriculture
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