Stakeholder involvement in research processes is widely seen as essential to enhance the applicability of research. A common conclusion in the extensive body of literature on participatory and transdisciplinary research is the importance of the institutional context for understanding the dynamics and effectiveness of participatory projects.
Innovation platforms (IPs) form a popular vehicle in agricultural research for development (AR4D) to facilitate stakeholder interaction, agenda setting, and collective action toward sustainable agricultural development. In this article, the authors analyze multilevel stakeholder engagement in fulfilling seven key innovation system functions. Data are gathered from experiences with interlinked community and (sub)national IPs established under a global AR4D program aimed at stimulating sustainable agricultural development in Central Africa.
El trabajo se desarrolla de la siguiente manera: en la sección inicial se pasa revista a la conformación y estructura de las cadenas de valor de la maquinaria agrícola, para, en la sección siguiente, poder pasar revista a cómo se estructura dicha cadena de valor en la Argentina. La siguiente sección, (capítulo III) estudia las dimensiones económicas del mercado argentino, complementado con la revisión sobre la evolución reciente de la producción y segmentos de mercado (capítulo IV), y el estado de ocupación de mano de obra que ofrece el sector (capítulo V).
Este documento tiene como objetivo crear un “mapa” actualizado de la relevancia económica de las distintas cadenas de valor de la producción agroindustrial argentina. El segundo objetivo de este volumen tiene como objetivo cuantificar ⎯valor de producción, valor agregado, empleo y localización⎯ las actividades desarrolladas por una treintena de cadena de valor que cubren la casi totalidad del sector, abarcando los principales insumos, la actividad primaria y la primera etapa de transformación industrial
Agricultural innovation systems has become a popular approach to understand and facilitate agricultural in-novation. However, there is often no explicit reflection on the role of agricultural innovation systems in food systems transformation and how they relate to transformative concepts and visions (e.g. agroecology, digital agriculture, Agriculture 4.0, AgTech and FoodTech, vertical agriculture, protein transitions). To support such reflection we elaborate on the importance of a mission-oriented perspective on agricultural innovation systems.
The latest comprehensive research agenda in the Journal of Agricultural Education and Extension was published in 2012 (Faure, Desjeux, and Gasselin 2012), and since then there have been quite some developments in terms of biophysical, ecological, climatological, social, political and economic trends that impact farming and the transformation of agriculture and food systems at large as well as new potentially disruptive technologies.
AgriFoodTech start-ups are coming to be seen as relevant players in the debate around and reality of the transformation of food systems, especially in view of emerging or already-established novel technologies (such as Artificial Intelligence, Sensors, Precision Fermentation, Robotics, Nanotechnologies, Genomics) that constitute Agriculture 4.0 and Food 4.0. However, so far, there have only been limited studies of this phenomena, which are scattered across disciplines, with no comprehensive overview of the state of the art and outlook for future research.