For millennia, humans have modified plant genes in order to develop crops best suited for food, fiber, feed, and energy production. Conventional plant breeding remains inherently random and slow, constrained by the availability of desirable traits in closely related plant species. In contrast, agricultural biotechnology employs the modern tools of genetic engineering to reduce uncertainty and breeding time and to transfer traits from more distantly related plants.
Agricultural biotechnology and, specifically, the development of genetically modified (GM) crops have been controversial for several reasons, including concerns that the technology poses potential negative environmental or health effects, that the technology would lead to the (further) corporatization of agriculture, and that it is simply unethical to manipulate life in the laboratory. GM crops have been part of the agricultural landscape for more than 15 years and have now been adopted on more than 170 million hectares (ha) in both developed countries (48%) and developing countries (52%).
Genetically engineered (GE) foods apply new molecular technologies to Widely adopted in the United States, Brazil, and Argentina for the p corn, soybeans, and cotton, they are practically banned in Europe and tigh throughout the world. We have found that GE foods have significantly incr of corn, soybean, and cotton, and lowered their prices, thus improving food foods have already contributed to a reduction in the use of pesticides and
The important role that small farms play in supporting rural livelihoods, conserving biodiversity and maintaining traditional landscapes, rural traditions and cultural heritage is widely accepted. Nevertheless, they are often under the radar of the agriculture policy mechanisms, which tend to focus on the very large farms and globally driven food chains.
The main challenge for African food systems in the future will be to provide food for a rapidly growing population with changing diets and food preferences. Whilst the population of Europe is decreasing, with consumers demanding food that is produced in an environmentally and socially responsible way, Africa’s population will more than double between 2020 and 2050, with food demand increasing even more as a result of dietary changes.
The EU-funded SALSA project set out to examine a potentially very important role of small farms – their contribution to food security.
Small farms in Northern Europe are found alongside some of the largest - and in some cases, most industrialised - farms in the whole of Europe.
SALSA is an EU Horizon 2020 project that set out to assess the current and future role of small farms and related small food businesses (suppliers, processors, distributors) in achieving sustainable Food and Nutrition Security (FNS). SALSA studied small farms in 30 reference regions in 20 countries - 25 regions (at the so-called NUTS3 administrative level) in Europe and 5 regions in Africa.
This document collects a series of fact sheets realized under the EU-funded SALSA project, which is aimed to understand how small farms and food businesses contribute to sustainable food and nutrition security (FNS).
The research findings in the fact sheets concern 30 reference regions from countries in Europe and Africa. For each region, we present:
● The regional indicators on the concentration and spatial distribution of small farms (SF), obtained also with support of the Sentinel-2 satellite data
The EU-funded Horizon 2020 “Small Farms, Small Food Businesses and Sustainable Food Security” (SALSA) project has brought together 16 partners, from European and African countries and the UN system, who have a unique blend of multidisciplinary expertise and experience from a wide range of geographical and socio-political realities.
SALSA has aimed to provide a better understanding of the current and potential contribution of small farms and food businesses to sustainable Food and Nutrition Security (FNS).