Farmer training on scouting for FAW

Use of rabbit urine as a foliar for vegetables

Terraced multistory gardens

Field release of parasitoids to counter the FAW

Demonstration on the use of augmentorium during farmers training in Muranga

Training on Integrated Pest and Pollinator Management (IPPM)

Pollination training in Muranga: A farmer being shown some pollinators

Cabbages planted at icipe Duduville campus (l) under a Push-pull plot and (r) in a control plot

Rachel Owino explaining how the Smart Fall armyworm trap works to a group from Australia Awards Africa at icipe Duduville campus

Australia Awards Africa team learning about Push-Pull technology at icipe Duduville campus

Training on Brachiaria seed multiplication in Kamonyi District, Southern Rwanda

Farmer training on how to use Desmodium vines

Desmodium seed production in Mashonaland East under Mukushi Seeds Company

Demonstration on how to use root splits

EU-FAW IPM
Uncategorized April 5, 2021

EU-FAW IPM

The Research for development (R4D) component which focuses on developing sustainable FAW-IPM strategies while refining the currently available options

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Push-Pull Benefits
Uncategorized April 5, 2021

Push-Pull Benefits

Push-Pull technology is the first integrated pest and soil fertility management strategy that effectively combines control of both stemborers and...

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What We Do

ISBA works at the intersection of science, agriculture, and environmental stewardship to develop and promote sustainable solutions.

Research Excellence

Pioneering scientific research for sustainable development and ecological

Environmental Impact

Solutions that protect biodiversity while ensuring effective crop protection

Farmer Support

Training and resources for farmers to implement sustainable practices effectively

Global Reach

Operating in 45+ countries with local partnerships and international collaboration

Our Strategic Priorities

Sustainable Development Goals

Aligning our work with global SDGs for food security and environmental sustainability

Innovation & Research

Advancing scientific knowledge in technology and application

Capacity Building

Training farmers and agricultural workers in sustainable

500+
Sustainable Solutions Developed
150+
Active Research Projects
10,000+
Farmers Supported Globally
45
Countries with Active Programs
Innovations
Fruit Fly IPM
Technology

Production of fruit offers one of the most important opportunities for income generation & improvement in food and nutritional security. However fruit flies cause damage by puncturing the fruit skin to lay eggs. During laying of eggs the bacteria from intestinal flora of the fly are introduced into the fruit. These bacteria bring about rotting of the tissues surrounding the egg.

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Insect for Food and Feed
Methodology

Use of insects as alternative sources of food for human consumption and feed for livestock is slowly gaining popularity in the world. Insects are also valuable sources of minerals and vitamins essential for human development.

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Tuta absoluta IPM
Technology

Tomato production is constrained by numerous biotic and abiotic factors. Among the former are arthropod pests, of which, Tuta absoluta is the key devastating pest. Infestation by the pest causes yield losses of up to 100%, jeopardizing the livelihood of millions of growers and other beneficiaries along the crop value chain. Alarmed by rampant spread and the destructive nature of this pest, growers in Kenya and Uganda have resorted to indiscriminate widespread use of broad-spectrum insecticides which is unsustainable with enormous health hazards to producers, consumers and the environment. This project proposes to implement an eco-friendly IPM approach for this pest in Kenya and Uganda that i

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Migrant Pest IPM
Technology

For many years, locusts, a dozen species of grasshoppers, have caused untold anguish to mankind.The mostly-used control methods for locust outbreaks, based on the use of synthetic insecticides, are extremely expensive. In addition, the large amounts of non-specific toxicants that are sprayed over affected areas destroy the environment and threatening biodiversity.icipe’s overall objective has been to develop components of a preventive, eco-friendly and cost-effective locust control system, based on bio-rational, semiochemical-based control tools and tactics.

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Thrips IPM
Technology

Thrips are sucking insects that can cause some damage to plants thus threatening the production of legumes in the continent, causing yield losses of 20-100%. To control the pest, many smallholder farmers over-rely on chemical insecticides, compromising the safety of the yield due to unacceptably high levels of pesticide residues.Previous research by icipe, Keele University and Plant Research International, The Netherlands identified special chemicals (pheromones) released by male bean flower thrips, which can attract males and female species of the pest. Field assessments indicated that these pheromones can enhance the ability of traps to capture thrips by over 130%. Such behaviour modifying

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Research on Nematodes
Technology

Beneficial nematodes such as the entomopathogenic nematodes have a unique life cycle involving symbiotic bacteria that are pathogenic to host insects. These nematodes are successfully mass produced and available in many countries for biological control of target insect pests. In SSA there is a need to enhance research and use of these nematodes in biological control of susceptible insect pests.

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Whitefly IPM
Technology

Bemisia tabaci, causes severe damage to a wide range of host plants by sucking sap from the leaves. Genetic resistance was identified as the most important component of an IPM programme, followed by phytosanitary, cultural and legal measures. Biological control is only effective in cropping systems with minimal or rational use of insecticides, and should be considered only as a complementary IPM strategy.

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Biocontrol of Spider Mites
Technology

Generally, spider mites prefer the undersides of leaves, but severe infestation will occur on both leaf surfaces as well as on the stems and fruits. They suck the sap of plant tissues. Damage by spider mites on beans is most serious in hot and dry conditions. Because they multiply very fast, they are able to destroy plants within a short period of time. icipe researchers report that a species of African nightshade has over time developed a sweet smelling mixture of compounds in its leaves thus when the mites reach the leaf’s surface, the “small hairs” on the leaf trap the pests, hindering their further movement. Additionally, the disturbance causes cracking of the glandular tips where they

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Biocontrol of Leafminers
Technology

Leaf miners are the larvae of the dipterous insect of the genus Liriomyza. The most common species are the tomato leaf miner Liriomyza bryoniae, the serpentine leaf miner L. trifolii or the pea leaf miner L. huidobrensis, mines in the leaves of your vegetable or ornamental crops. icipe’s biological control tactics include the use of entomopathogenic fungi and fungal endophytes (F3ST1, G1LU3, S4SU1, ICIPE 279), and use of neem-based pesticides.

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Fall-armyworm IPM
Technology

Fall armyworm (Spodoptera frugiperda) is an insect pest which feeds on more than 80 varieties of crops including maize, sorghum, rice, millet, wheat, sugarcane and vegetables, but primarily affects maize.FAW larvae attacks maize plants during all stages., icipe has identified other new and highly potent strains (icipe 41, icipe 655, icipe 20) that are effective against various life stages of the fall armyworm.Moreover, the Centre has established that the biopesticides can be used in combination with other fall armyworm management options like the push-pull technology, pheromone traps, attractants and the pest’s natural enemies.

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News & Articles
10 May 2021
A Natural Enemy to Counter A Ravaging Pest News

For a long time, tomato farmers have relentlessly relied on...

5 April 2021
EU-FAW IPM News

The Research for development (R4D) component which focuses on developing...

5 April 2021
Push-Pull Benefits News

Push-Pull technology is the first integrated pest and soil fertility...

5 April 2021
How to make hay from bracharia push-pull-plots News

Apart from providing the day-to-day fodder requirements for the farmer,...

5 April 2021
Push pull technology can control fall armyworm News

Push-Pull technology can control fall armyworm Instead of using expensive...

5 April 2021
Delicious livestock feed from Push–Pull technology: The experience from icipe Uganda office News

Livestock feed is among the numerous benefits of Push-Pull technology....

23 March 2021
“These days, we’ve got enough to eat” News

Janet Dzimiri, a smallholder from Zimbabwe, was unable to feed her...

23 March 2021
The pioneering Push-Pull method and its appeal over agrochemicals News

Time is a luxury. A commodity which stands in stark...

24 July 2018
Ikoranabuhanga rya ‘Push Pull’ rirwanya ibyonnyi ryongereye umusaruro w’ubuhinzi News

Abahinzi bakoresha uburyo bushya bw’ikoranabuhanga ‘Push Pull’ bugamije kurwanya ibyonnyi...

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