This gender and social inclusion strategy is designed to support the sustainable and equitable delivery of Bioversity International’s institutional vision and mission. It will promote gender-responsive and socially inclusive practices into all research-for-development practices in the organization, to contribute to narrowing the gender and equity gaps in the management of and benefit sharing from agricultural and tree biodiversity.
Cette partie a pour objectif de retracer l’histoire de la création de l’agroécologie et de comprendre les conditions qui lui permettent d’exister dans un contexte paysan rural. Depuis ces mêmes fermes, les protagonistes essayent de transmettre le sentiment et le cœur de l’agroécologie tout en laissant voir le fonctionnement du MACAC, les pratiques quotidiennes et les réflexions de chaque protagoniste.
This section intends to picture how is agroecology done and lived in a rural peasant context. From their own plantations they try to carry over the feeling and heart of agroecology, while showing the operation of PTPAM at the same time, the everyday practices and the thoughts of their main players.
Diversity field school (DFS) is a community-based action designed to create a platform for learning and sharing of crop diversity related knowledge and information. DFS places an emphasis on agency, participation, and empowerment, and seeks to develop both the knowledge base and leadership potential of local farmers. It adopts the models of farmers’ field school and community based management through a lens of crop genetic diversity.
The creative process that leads to farmers’ innovations is rarely studied or described precisely in agricultural sciences. For academic scientists, obvious limitations of farmers’ experiments are e.g. precision, reliability, robustness, accuracy, validity or the correct analysis of cause and effect. Nevertheless, we propose that ‘farmers’ experiments’ underpin innovations that keep organic farming locally tuned for sustainability and adaptable to changing economic, social and ecological conditions.
Farmers’ experiments can be defined as the autonomous activities of farmers to try or introduce something new at the farm, and include evaluation of success or failure with farmers’ own methods. Experiments enable farmers to adapt their farms to changing circumstances, build up local knowledge, and have resulted in countless agricultural innovations. Most research on the topic has been conducted in countries of the south.
Organic farming is recognized as one source for innovation helping agriculture to develop sustainably. However, the understanding of innovation in agriculture is characterized by technical optimism, relying mainly on new inputs and technologies originating from research. The paper uses the alternative framework of innovation systems describing innovation as the outcome of stakeholder interaction and examples from the SOLID (Sustainable Organic Low-Input Dairying) project to discuss the role of farmers, researchers and knowledge exchange for innovation.
This policy brief shows how digital tools can help to ensure that public money for agricul-tural extension is spent wisely. Governments often fund offices, training centers, and the salaries of extension officers, but cannot eas-ily review the impacts of these expenditures. This is because the activities of extension agents are not monitored systematically. Ex-ension services rarely generate quantitative data on the effects of their work.
This is the proceedings of the international conference ‘Innovations in Organic Food System for Sustainable Production and Enhanced Ecosystem Services’. The proceedings are a compilation of peer-reviewed articles based on presentations of 18 speakers invited conference speakers and published as a Special Issue of the scientific journal ‘Sustainable Agriculture Research’ by the Canadian Centre of Science and Education.
This brief provides an overview of the monitoring and evaluation (M&E) system of the CGIAR Research Program on Aquatic Agricultural Systems (AAS) and describes how the M&E system is designed to support the program to achieve its goals. The AAS program aims to improve the lives of 22 million people dependent upon aquatic agricultural systems by 2024 through research in development.