Grown in Jamaica since the days of slavery, food yams are major staples in local diets and a significant non-traditional export crop. The cultivation system used today is the same as 300 years ago, with alleged unsustainable practices. A new cultivation system called minisett was introduced in 1985 but the adoption rate twenty four years later is extremely low.
There is an ongoing debate on what constitutes sustainable intensification of agriculture (SIA). In this paper, we propose that a paradigm for sustainable intensification can be defined and translated into an operational framework for agricultural development. We argue that this paradigm must now be defined—at all scales—in the context of rapidly rising global environmental changes in the Anthropocene, while focusing on eradicating poverty and hunger and contributing to human wellbeing.
The development objective of the Sustainable Management of Agricultural Research and Technology Dissemination Project is to improve the institutional capacity and performance of the Indonesian Agency for Agricultural Research and Development (IAARD) to develop and disseminate relevant and demand-driven innovative technologies, meeting the needs of producers and of the agri-food system. There are four components to the project. The first component of the project is human resource development and management.
Revitalizing agriculture is critical for rural Indonesia's economic prosperity. Historically, Indonesia's dramatic poverty reduction was driven by progress in agriculture and agriculture continues to be a potent driver of growth and poverty alleviation. Agricultural sector growth strongly induces non-agricultural sector growth in rural areas, particularly through demand for locally produced and services. Agricultural sector productivity growth (along with price changes) has remained the most important way out of poverty.
An evidence policy brief on the contribution of small-scale fisheries to a healthy and sustainable food system in Malawi.
This report summarizes the international symposium organized on 21 June 2016 by the Tropical Agricultural Platform (TAP) to discuss capacity development for food security and nutrition in Agricultural Innovation Systems (AIS). In addition, the symposium aimed to present the findings of the e-conference on "Innovation systems for food security and nutrition: understanding the capacities needed" that took place between 18 April and 13 May 2016.
This report provides summary findings and conclusions from a set of five case studies examining the scaling up of pro-poor agricultural innovations through commercial pathways in developing countries.
This study provides a model that supports systematic stakeholder inclusion in agricultural technology. Building on the Responsible Research and Innovation (RRI) literature and attempting to add precision to the conversation around inclusion in technology design and governance, this study develops a framework for determining which stakeholder groups to engage in RRI processes. We developed the model using a specific industry case study: identifying the relevant stakeholders in the Canadian digital agriculture ecosystem.
Les systèmes alimentaires durables sont essentiels pour assurer la sécurité alimentaire et une alimentation saine pour les générations futures. Pour faire la transition vers la durabilité, de nombreuses activités du système alimentaire doivent se transformer, et une myriade d’acteurs à travers le monde doivent agir localement. Certains changements sont plus faciles à mettre en place que d’autres, mais savoir comment naviguer à travers ces changements pour promouvoir des modes de consommation et de production durables exige un ensemble de compétences complexes.
Pendant des siècles, les agriculteurs, éleveurs, pêcheurs et sylviculteurs ont développé des systèmes agricoles diversifiés, adaptés à leurs conditions locales, en employant des techniques et des pratiques ingénieuses, éprouvées au fil du temps, afin de fournir un ensemble vital de services sociaux, culturels, écologiques et économiques à l'humanité. Ces «Systèmes ingénieux du patrimoine agricole mondial» (SIPAM) sont des paysages d'une beauté remarquable associant la biodiversité agricole à des écosystèmes résilients et à un précieux patrimoine culturel.