In Cabo Verde, the Fall Armyworm (FAW) was first observed in April 2017 and to date, all the farming islands are affected. In the absence of mitigating measures, losses could reach 50% of the annual production estimated at 5 200 tons at a cost of EUR 2.6 million. FAO is supporting the country in its control and mitigation actions against the FAW infestation, while mobilizing other partners in order to further assist Cabo Verde.
This paper traces the evolution of the innovation systems framework within the agricultural sector in Sub-Saharan Africa, and presents a conceptual framework for agricultural innovation systems. The difference between innovation ecology/ecosystems and intervention-based innovations systems is highlighted, given that these two concepts are used at different levels in promoting and sustaining agricultural innovations.
In Mexico there are public programs that promote the improvement of the technical and productive conditions of the agriculture sector through organisations such as Produce Foundation Puebla (FUPPUE). This organisation has implemented diverse mechanisms oriented to promoting farmers' technological and productive capabilities. However in some cases when the FUPPUE leaves them, farmers' capabilities and performance decrease within a short period of time.
Poverty in Pakistan is overwhelmingly rural. Some two-thirds of Pakistan's population, and over 60 percent of the country's poor, live in rural areas. In 2005, average per capita expenditures in rural areas were 31 percent lower than in urban areas. This inequality between urban and rural areas is re-enforced by inequality within and between rural areas.
There is increasing evidence that public organizations dedicated exclusively to research and development (R&D) in agribusiness need systematic management tools to incorporate the uncertainties and complexities of technological and nontechnological factors of external environments in its long-term strategic plans. The major issues are: What will be the agribusiness science and technology (S&T) needs be in the future? How to prepare in order to meet these needs?
Knowledge on indigenous chicken production exists but its potential is not yet fully exploited. Although the actors could be known, it is not clear where value is lost or gained, neither is it clear which of the actor gains or losses most, nor the challenges they face. Moreover, if some of the actors are exploited and therefore, realize glaring losses, the entire value chain will be affected and this will affect not only the actors who earn a direct living from the chain, but the entire nation for loss of gainful employment and revenue.
The economic globalisation has opened new pathways for commerce and triggered a logistical revolution, which in turn has produced enormous technological innovations. In this context, the role of startups is becoming increasingly crucial since they are positioning themselves as innovation enablers among large and small companies. Between these innovations, IoT, Big Data Analytics and Blockchain can be used in various domains, among which the logistics of the whole wine supply chain.
This Guide is prepared based on the concepts, principles and practices of the innovation systems, with particular reference to integrated agricultural research for development (IAR4D) which uses innovation platforms (IPs) in agriculture value chains and food systems. The contents of this Guide have been informed by the experiences and lessons learned from the IPs in agriculture value chains and food systems of CORAF/WECARD, National Agricultural Research Systems (NARS) and FARA projects, as well as the CTA’s training.
This paper presents findings of an explorative case study that looked at 22 organisations identified as fulfilling an intermediary role in the Kenyan agricultural sector. The results show that these organisations fulfill functions that are not limited to distribution of knowledge and putting it into use. The functions also include fostering integration and interaction among the diverse actors engaged in innovation networks and working on technological, organisational and institutional innovation.
This paper takes the viewpoint of a social scientist and looks at agricultural scientists' pathways for science impact. Awareness of these pathways is increasingly becoming part and parcel of the professionalism of the agricultural scientist, now that the pressure is on to mobilize smallholders and their productive resources for (global) food security and for reducing persistent rural poverty. Significant new thinking about pathways is emerging and it is useful to present some of this, even if it is not cut-and-dried.