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Climate resilient CRAM varieties for enhanced rice productivity for African farmers CRAM offers governments a practical pathway to strengthen domestic rice production, food security and climate resilience in suitable upland areas. Its short production cycle, drought tolerance and high yield potential can help farmers manage rainfall variability and reduce production risks. Its suitability for rainfed systems also supports sustainable intensification, while contributing to SDGs 1, 2, 13 and 15. Successful national scaling will require appropriate agroecological targeting, quality seed supply, extension support and strong public–private partnerships.
Bringing farmers, vets, and institutions together to scale livestock vaccination! Innovation Platforms (IPs) support government-led livestock vaccination programs by coordinating public veterinary services, local authorities, private veterinarians, vaccine producers, and farmer organizations. They strengthen planning, monitoring, and accountability of vaccination campaigns, improve communication along the vaccine delivery chain, and help increase vaccination coverage to achieve disease control and herd immunity targets.
Spot the Pest, Stop the Damage Governments use standardized FAW ID guides to ensure extension agents and farmers across the country are working with the same information to recognize FAW. This consistency improves surveillance, allowing local officers to confirm new sightings rapidly and enabling a quicker government response. Proper identification prevents unnecessary pesticide use on harmless insects, supporting governmental goals to reduce chemical misuse. Investing in nationwide FAW ID training builds a grassroots early warning system, allowing officials to pinpoint small infestations and coordinate control operations quickly, thereby protecting the national maize crop.
Knowledge, resources, and tools for plant health! The Crop Health Knowledge Library supports national efforts to improve food security and plant protection by providing reliable, science-based resources for managing pests, diseases, and crop threats. It helps strengthen extension services, align with sustainable agriculture policies, and improve farmer outreach through practical, ready-to-use materials.
From planting to certification—seed production made simple. The Cassava Seed Field Multiplication Protocol is a standardized agricultural method that enables the field-based production of high-quality cassava planting material. It combines clean seed sources, agronomic best practices, regulatory compliance, and digital tools to support certified cassava seed production by seed companies, farmers, and institutions.
Enhancing cassava productivity through healthy planting material Cassava Seed Quality Management is a national system that ensures the production and distribution of high-quality, disease-free cassava planting material. By regulating and certifying seed quality, governments can control the spread of major cassava diseases, boost productivity by over 100%, and support the formalization of the cassava seed sector for long-term food security and economic development.
Optimizing Pesticide Application for Sustainable Agriculture The CABI Crop Sprayer is a mobile application designed to assist farmers and agricultural extension workers in accurately calculating pesticide quantities for crop protection. By ensuring precise application, it promotes effective pest control while minimizing environmental impact.
Boost efficiency in animal sample extraction and improve target amplification Thermo Fisher Scientific’s Animal Health technology suite offers a range of advanced diagnostic tools designed for precise pathogen detection, with a focus on avian diseases like avian influenza. Key components include Real-Time PCR Diagnostic Kits, which provide highly sensitive detection for early disease identification; VetMAX Master Mixes for accurate PCR amplification; MagMAX Core Extraction Kits that streamline DNA/RNA extraction from diverse samples; and the QuantStudio 5 Real-Time PCR System for high-throughput, rapid diagnostics. Supporting SDGs 3 (Good Health) and 12 (Responsible Consumption and Production), this suite enhances disease management, minimizes losses, and promotes responsible production. Targeting veterinary labs, researchers, and farms, the technology can be distributed through resellers or direct partnerships with clinics and development agencies. With flexible pricing based on kit and sample volume, it offers high ROI potential from reduced animal losses and improved productivity. Thermo Fisher’s technology stands out for its speed, precision, and accessibility, making it ideal for regions in Africa to strengthen animal health and agricultural resilience.
Better yield, less disease, more income A practical variety package to strengthen tomato production planning and reduce losses from bacterial wilt and tomato yellow leaf curl virus through resistant or tolerant lines, backed by documented variety performance (cycle, yield, fruit weight, disease reaction).
Mitigating Africa’s worst pest threat to food security by revolutionizing crop protection with a biological and sustainable weed control alternative. The Toothpick Project introduces an innovative biocontrol technology utilizing a specific strain of host-specific fungus, Fusarium oxysporum f.sp. strigae, to combat Striga (witchweed), Africa's most severe pest threatening food security. Approximately 50 million hectares of croplands (around 40 million farms) in sub-Saharan Africa are infested with Striga, causing over $9 billion in crop losses annually. Striga plants produce over 50,000 seeds per season, easily spreading through wind, human and animal traffic, and farming tools, adding to the soil seed bank. This selective biological herbicide “Kichawi Kill”, applied by farmers as a seed coating, aims to restore crop yields by targeting Striga without harming maize. This game-changing agri-tech provides a safe, effective, and affordable alternative to traditional chemical herbicides.
long lasting banana nicknamed 'kiwangazi' by farmers. The KABANA 6H/NARITA7 is a high-yielding banana hybrid developed by IITA and NARO. It’s known for its tolerance to diseases like black Sigatoka and pests like weevils and nematodes, which increases the longevity of banana plantations. With a real-life yield of 57.7 kg per bunch and a potential yield of 60 tons/ha/year, it offers significant economic return. This variety was introduced to combat the decreased lifespan and yield decline in Uganda’s banana plantations.
Ecopticide Agri, your 3-in-1 bio product against insect, fungi and nematode Ecopticide Agri emerged as a groundbreaking environmental solution designed to combat the escalating challenges faced by farmers in pest management. Conventional approaches led to harvest losses, reduced production yield, and environmental concerns such as soil depletion and biodiversity loss. Pests developed resistance to existing control products, rendering them less effective. In response, Ecopticide Agri was developed to provide a multifunctional, preventive solution, reducing the risk of pest invasions and enhancing crop protection.
Smart Solutions for Safer Farming The technology "Integrated Management of Insects, Diseases, and Weeds" is of paramount importance that addresses several critical issues in Pest and Disease Vulnerability, Inappropriate Pesticide Usage, Pesticide Resistance, Food Security Concerns, Environmental Impact. The technology provides a solution through integrates various biological, mechanical, physical, and cultural methods to achieve more effective and sustainable crop protection. IPM is a vital strategy to combat the challenges posed by pests and diseases, ensuring food security, and promoting responsible agricultural practices.
Weed Management for Optimal Yield The "Mechanical and Chemical Weed Management" technology is a game-changer for bean farmers, especially in regions like Sub-Saharan Africa. Weeds can cause major losses in bean crops, and this technology offers a more efficient and cost-effective solution compared to manual weeding. By using herbicides and mechanical weeders, farmers can save time, increase their yield, and ultimately improve their income. This innovation is a powerful tool in ensuring food security and economic stability for bean farmers in various African countries.
Balanced Protection for Sustainable Harvests Integrated Management of Insects, Diseases, and Weeds in Wheat (IPM) is an approach designed to minimize the use of chemical pesticides while maximizing natural control mechanisms for pests. It involves a combination of biological, mechanical/physical, and cultural techniques tailored to local conditions. IPM is crucial in preventing the emergence of pesticide-resistant pests, ensuring lasting crop protection, and maintaining food safety and environmental integrity.
Reduce pesticide and herbicide losses with IITA's herbicide calculator Widespread abuse of pesticides (including herbicides) is common due to poorly calibrated spray tanks. Farmers overdose or underdose when applying pesticides. The IITA Herbicide Calculator helps farmers and spray service providers to correctly estimate the amount of herbicide to add to backpack sprayers, and promotes herbicide efficacy.
Disease-Resistant Cassava Cuttings for Higher Yields Disease resistant cassava varieties plays a critical role in overcoming the challenges faced by cassava farmers in Sub-Saharan Africa. Cassava, a vital food crop in the region, is frequently plagued by devastating viral diseases, such as cassava mosaic disease and cassava brown streak disease, which harm the leaves, reduce photosynthesis, and result in significant yield losses, sometimes leading to complete crop failure. In essence, disease resistant cassava varieties are instrumental in safeguarding cassava production, ensuring food security, and improving the livelihoods of farmers in Sub-Saharan Africa. These varieties represent a sustainable and efficient approach to combat viral infections that threaten cassava crops, making them a vital technology for the region.
Unlocking Maize's Full Potential Pre-emergence herbicides for maize crops are a crucial innovation for agriculture in Sub-Saharan Africa. High weed encroachment poses a significant threat to crop yields by depleting soil nutrients and water. These herbicides, applied before or at planting, prevent weed development during the critical early growth stages of maize, ensuring higher grain yields, better fertilizer efficiency, and increased resilience to drought. Their adoption is vital for improving food security and agricultural sustainability in the region.
Boost maize yields while eliminating the issue of Striga infestation The technology of Imazapyr resistant maize for Striga management (IR maize) is of paramount significance in addressing the persistent challenge of Striga weed infestations in maize crops, particularly in Sub-Saharan Africa. Commercial seed manufacturers are introducing improved maize varieties that have been genetically modified to resist imazapyr, an herbicide effective in safeguarding crops from parasitic Striga weeds. This technology is a game-changer for regions where Striga significantly impacts maize production.
Resilient and Nutrient-Rich OFSP for Better Agriculture The technology of "Drought and Virus Tolerant Orange-Fleshed Sweet Potato" holds paramount significance in Sub-Saharan Africa. It addresses critical agricultural challenges by providing cultivars of orange-fleshed sweet potato (OFSP) tailored to combat drought, heat stress, and viral infections. These specially bred OFSP varieties offer rapid harvest maturity, completing their growth cycle within 90 days, which is particularly beneficial in regions with uncertain rainfall patterns towards the end of the growing season. Furthermore, the introduction of OFSP varieties resistant to a range of viruses and destructive insects has significantly bolstered crop resilience. This technology not only enhances food security but also contributes to economic sustainability for communities in the region.
A rapid quality plantlets delivery technology for banana In-Vitro Tissue Culture Propagation involves laboratory-based propagation of disease-free banana and plantain through tissue culture. It allows for the rapid production of uniform and disease-free plantlets, aiding in faster recovery from disease outbreaks and extreme weather conditions.
Better Plantain Varieties for Thriving Farmers Plantain is a crucial staple in Central and West Africa, ranking third after yam and cassava. However, its production faces significant challenges, particularly from black leaf streak disease, weevils, and nematodes. These factors lead to substantial yield losses. Population growth further strains resources, affecting soil fertility. The development of disease-resistant hybrids is a pivotal response to these challenges. These improved plantain varieties not only offer heightened resistance but also focus on high productivity, drought resilience, and preferred cooking traits.
Cultivate superior banana varieties for abundant yields and enhanced food security. Traditional banana varieties in the Great Lakes region, particularly in Uganda, have experienced stagnated production with yields as low as 5-30 tons per hectare annually, far below their potential of 70 tons. This decline is primarily attributed to the susceptibility of East African Highland bananas to various pests and diseases. Compounding the issue are challenges posed by declining soil fertility and drought. The result is food shortages, putting vulnerable communities at risk of hunger. The introduction of disease-resistant hybrid banana varieties represents a pivotal solution. These hybrids exhibit higher resistance to black leaf streaks, nematodes, and bunchy top disease, offering the promise of enhanced productivity and food security.
Preserving Water, Pond Liners for Sustainable Fish Farming. Pond Liners, an innovative water conservation technology, employ sheets of UV-resistant materials to form an impermeable layer between water and soil. This reduces water losses, prevents algal blooms, and facilitates nutrient cycling. Affordable and easy to install, these liners are crucial for fish farming in areas with sandy soils or limited access to freshwater.
Secure Shelters, Thriving Flocks Small Ruminant Containment in Protective Sheds is a technology developed to address the challenges faced by small-scale livestock farmers. It offers a cost-effective solution for protecting goats and sheep from predators, inclement weather, and the spread of diseases to humans. By providing simple shelter options using locally available materials, this technology significantly improves the well-being and productivity of these small ruminants while remaining affordable for resource-constrained farmers.
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