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
Scientific advances, technical innovations and application of digital technology have the potential to contribute to a wide-scale structural transformation of food systems. In food safety and process control, as in other areas, technical advances outpace the understanding of how to use these tools to their greatest advantage and how they should be regulated. This thematic brief for the First FAO/WHO/AU International Food Safety Conference outlines key issues - strategic direction of science and innovation in food systems.
Les progrès scientifiques, les innovations techniques et l'application des technologies numériques peuvent contribuer à une transformation structurelle à grande échelle des systèmes alimentaires. Dans le domaine de la sécurité sanitaire des aliments et du contrôle des processus, comme dans d'autres domaines, le rythme du progrès technique est si rapide qu'il est difficile de savoir comment exploiter au maximum les outils qui en découlent et les réglementer.
La faim dans le monde s'est considérablement aggravée en 2020, ont déclaré aujourd'hui les Nations Unies – une aggravation qui est probablement liée en grande partie aux répercussions de la pandémie de COVID-19. On ne dispose pas encore d'une image complète de l'impact de la pandémie*, mais d'après un rapport établi conjointement par plusieurs organismes des Nations Unies, un dixième environ de la population mondiale – ce qui pourrait représenter jusqu'à 811 millions de personnes – était en situation de sous-alimentation en 2020.
Version abrégée de la publication phare de la FAO, L’État de la sécurité alimentaire et de la nutrition dans le monde 2021, cette brochure contient les principaux messages et le contenu de la publication et est destiné aux médias, aux responsables politiques et au grand public