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The improvement of crop yield in marginal environments using ‘on-farm’ seed priming: nodulation, nitrogen fixation, and disease resistance

2005/11/29 by D. Harris, W. A. Breese, W.A. Breese +1
Agricultural and Biological Sciences · #Legume Nitrogen Fixing Symbiosis #Plant responses to water stress #Seed Germination and Physiology

paper · doi:10.1071/ar05079

crossref issued 2005/11/29 · crossref published 2005/11/29 · crossref published-online 2005/11/29 · openalex publication_date 2005/11/29 · crossref created 2005/11/29 · crossref published-print 2005/11/30 · openalex created_date 2025/10/10 · crossref deposited 2025/10/26 · crossref indexed 2026/07/27 · openalex updated_date 2026/07/28

Abstract

On-farm seed priming with water is a low-cost, low-risk technology that is easily adopted by resource-poor farmers. It increases the yield of tropical and subtropical annual crops in marginal areas by a combination of better crop establishment and improved individual plant performance. The effects of seed priming, i.e. soaking seeds overnight in water before sowing, on plant growth and development are consequences of faster germination, emergence, and more vigorous early growth. Results from in-vitro, on-station and on-farm experiments are discussed. Recent work has tested opportunities for resource-poor farmers to use seed priming as a vehicle for applying biofertilisers (Rhizobia). Preliminary results from field experiments suggest that these interventions are very effective over and above the already demonstrated benefits of priming with water alone. In a pot experiment using chickpea, combining a Rhizobium inoculation with seed priming significantly increased nodulation but had little effect on yield. Nevertheless, the results confirmed that Rhizobium inoculation is compatible with on-farm seed priming. Observations in the field have shown that some primed crops show enhanced resistance to disease, either as a consequence of increased vigour, altered phenology, or due to some more fundamental mechanism associated with exposure of seeds to anaerobic conditions during priming. Priming seeds of a highly susceptible cultivar of pearl millet in water for 8 h before sowing significantly reduced the incidence of downy mildew in artificially infected seedlings from 80% to less than 60%.

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