Author:
Laajaj Rachid,Macours Karen,Masso Cargele,Thuita Moses,Vanlauwe Bernard
Abstract
AbstractIncreased adoption of improved agricultural technologies is considered an essential step to address global poverty and hunger, and agronomic trials suggest intensification in developing countries could result in large yield gains. Yet the promise of new technologies does not always carry over from trials to real-life conditions, and diffusion of many technologies remains limited. We show how parcel and farmer selection, together with behavioural responses in agronomic trials, can explain why yield gain estimates from trials may differ from the yield gains of smallholders using the same inputs under real-life conditions. We provide quantitative evidence by exploiting variation in farmer selection and detailed data collection from research trials in Western Kenya on which large yield increments were observed from improved input packages for maize and soybean. After adjusting for selection, behavioural responses, and other corrections, estimates of yield gains fall to being not significantly different from zero for the input package tested on one of the crops (soybean), but remain high for the other (maize). These results suggest that testing new agricultural technologies in real-world conditions and without researcher interference early in the agricultural research and development process might help with identifying which innovations are more likely to be taken up at scale.
Funder
DFID-ESRC
Standing Panel for Impact Assessment of the CGIAR under SIAC 1
Word Bank
INRA
French National Research Agency
Publisher
Springer Science and Business Media LLC
Reference74 articles.
1. van Oort, P. A. J. et al. Can yield gap analysis be used to inform R & D prioritisation?. Glob. Food Sec. 12, 109–118 (2017).
2. Jack, B.K. Market inefficiencies and the adoption of agricultural technologies in developing countries. White paper, Agricultural Technology Adoption Initiative. Abdul Latif Jameel Poverty Action Lab/MIT, Cambridge, MA https://escholarship.org/uc/item/6m25r19c (2013).
3. de Janvry, A., Sadoulet, E. & Suri, T. Field experiments in developing country agriculture. In Handbook of Economic Field Experiments (eds Banerjee, A. & Duflo, E.) 427–466 (Elsevier, Amsterdam, 2017).
4. Magruder, J. An assessment of experimental evidence on agricultural technology adoption in developing countries. Ann. Rev. Resour. Econ. 10, 299–316 (2018).
5. Marenya, P. P. & Barrett, C. B. State-conditional fertilizer yield response on western Kenyan farms. Am. J. Agric. Econ. 91(4), 991–1006 (2009).
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