Los cambios acontecidos en la agricultura cubana a finales del siglo XX provocaron la ruptura del paradigma basado en la dependencia de importaciones, por lo que se precisó comenzar a construir un nuevo modelo técnico-económico sobre la base del desarrollo endógeno, asociado al fomento de capacidades innovadoras y de tecnologías sostenibles; ello exigió que los centros de desarrollo de conocimiento se centraran en la aplicación de innovaciones, mediante adecuados procesos de extensión rural.
Desde finales de la década de los ochenta, la humanidad experimenta la ruptura de muchos de los modelos, enfoques y paradigmas que hasta entonces habían guiado los procesos de desarrollo, los que abarcan las dimensiones social, económica, ambiental, tecnológica y política. La globalización y la revolución de la informática y las telecomunicaciones, entre otras, han provocado incertidumbre y complejidad para analizar los fenómenos y procesos que inciden en el desarrollo.
Se realizó una investigación con el objetivo de identificar las limitantes para la producción de alimentos, así como sus causas y posibles soluciones, en 25 fincas de los municipios Perico, Martí, Colón y Jagüey Grande (provincia Matanzas, Cuba) involucradas en el Programa de Innovación Agrícola Local (PIAL); las cuales se identificaron y construyeron, de manera conjunta, con productores, propietarios o usufructuarios de dichas fincas.
El objetivo de este trabajo es dar a conocer cómo se han desarrollado los vínculos entre el sector productivo y la Estación Experimental de Pastos y Forrajes “Indio Hatuey”. Se emprendieron una serie de medidas para la recuperación de la base alimentaria del ganado, con el empleo de prácticas alternativas y la aplicación de sistemas sostenibles de producción animal, las cuales tenían como principal objetivo el aumento de la producción, aun con pocos recursos
Developing regions' food system has transformed rapidly in the past several decades. The food system is the dendritic cluster of R&D value chains, and the value chains linking input suppliers to farmers, and farmers upstream to wholesalers and processors midstream, to retailers then consumers downstream. This study analyze the transformation in terms of these value chains' structure and conduct, and the effects of changes in those on its performance in terms of impacts on consumers and farmers, as well as the efficiency of and waste in the overall chain.
The efforts to adapt to climate change in developing countries are in their infancy, and hopefully CSA will be a major contributor to these efforts. But CSA itself is evolving, and there is a growing need to refine and adapt it to the changing realities. This section of the book focus on the implications of the empirical findings for devising effective strategies and policies to support resilience and the implications for agriculture and climate change policy at national, regional and international levels.
The topics addressed in this book are of vital importance to the survival of humankind. Agricultural biodiversity, encompassing genetic diversity as well as human knowledge, is the base upon which agricultural production has been built, and protecting this resource is critical to ensuring the capacity of current and future generations to adapt to unforeseen challenges.
This paper shows that the current generation of transgenic crop varieties has significant potential to improve economic welfare in low-income countries. These varieties might increase crop yields in low-income countries in cases when pesticides have not been used. They will reduce negative health effects of chemicals when they replace them. With low transaction costs, appropriate infrastructure, and access to intellectual property, multiple varieties of transgenics will be introduced.
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%).