Register      Login
Crop and Pasture Science Crop and Pasture Science Society
Plant sciences, sustainable farming systems and food quality
RESEARCH ARTICLE

Seedball technology enhances pearl millet yield in a Sahelian subsistence production system

Charles I. Nwankwo https://orcid.org/0000-0002-5552-9900 A * , Hannatou M. Oumarou B , Maman Nouri B , Ali M. Aminou C and Ludger Herrmann A
+ Author Affiliations
- Author Affiliations

A Institute of Soil Science and Land Evaluation, University of Hohenheim, Emil-Wolff Straße 27, 70599 Stuttgart, Germany.

B Departement de Culture Pluviales (DCP), National Institute of Agricultural Research of Niger, Maradi, Niger.

C FUMA Gaskiya, Federation of Maradi Farmer Unions, Maradi, Niger.

* Correspondence to: c.nwankwo@uni-hohenheim.de

Handling Editor: Youhong Song

Crop & Pasture Science 73(4) 390-400 https://doi.org/10.1071/CP21158
Submitted: 11 March 2021  Accepted: 10 October 2021   Published: 11 February 2022

© 2022 The Author(s) (or their employer(s)). Published by CSIRO Publishing

Abstract

Pearl millet (Pennisetum glaucum (L.) R.Br.) is the major staple crop produced by subsistence farmers in the West African Sahel, but its panicle yield is low because of poor seedling establishment in low-nutrient soils. Seedball is a cheap seed-pelleting technique that combines sand, loam, seeds and optionally wood ash or mineral fertiliser as an additive to enhance early growth of pearl millet under infertile soil conditions. The aim of this study was to investigate the effects of seedball technology on pearl millet crop establishment and panicle yield on-farm under Sahelian subsistence conditions. Over 2000 on-farm (2015–18) trials were conducted in 65 villages of the Maradi region in Niger. Conventionally sown and seedball-derived pearl millet crops were grown by using ‘farmer-optimised’ simple split-plot designs with three treatments: (i) farmers’ practice as control; and seedballs (2.0 cm diameter, made from 80 g sand + 50 g loam + 25 mL water + 2.5 g seeds as standard recipe) that contained either (ii) 3 g wood ash or (iii) 1 g mineral fertiliser (nitrogen, phosphorus, potassium; NPK) as effective nutrient compounds. In 2016–18, participating farmers could opt for one of the seedball treatments. Panicle as well as stover yield data were collected and compared with respect to seedball type (wood ash vs NPK), sowing depth (shallow vs deep), sowing time (wet vs dry), weed management (complete vs partial), local soil type (texture range sand to loamy sand), cropping system (sole vs mixed), and farmer. Results showed that seedballs do not suppress seedling emergence. Seedball treatments produced fewer but longer and denser panicles. Wood ash-amended seedballs showed a higher panicle yield increase relative to their site controls than NPK-amended seedballs. However, the average panicle yield of NPK-amended seedballs was higher than that of the wood ash-amended seedballs. The treatment factors wet sowing, partial weeding, sole cropping and farmers showed higher panicle yield. The seedball technology increases pearl millet panicle yield by ∼30% in the Sahel; it is simple and based on local materials.

Keywords: dry sowing, erratic rainfall, early crop growth, local production system, local resources, low chemical soil fertility, micro-dosing, panicle yield increase, peasant farmers, Sahelian farming, seedling establishment, small-scale millet production, staple crop.


References

Afzal I, Javed T, Amirkhani M, Taylor AG (2020) Modern seed technology: seed coating delivery systems for enhancing seed and crop performance. Agriculture 10, 526
Modern seed technology: seed coating delivery systems for enhancing seed and crop performance.Crossref | GoogleScholarGoogle Scholar |

Almansouri M, Kinet J-M, Lutts S (2001) Effect of salt and osmotic stresses on germination in durum wheat (Triticum durum Desf.). Plant and Soil 231, 243–254.
Effect of salt and osmotic stresses on germination in durum wheat (Triticum durum Desf.).Crossref | GoogleScholarGoogle Scholar |

Atkinson VL, Atkinson V (2003) Mine and industrial site revegetation in the semi-arid zone, North-Eastern Eyre Peninsula, South Australia. Master thesis, University of South Australia, Australia.

Aune JB, Ousman A (2011) Effect of seed priming and micro-dosing of fertilizer on sorghum and pearl millet in Western Sudan. Experimental Agriculture 47, 419–430.
Effect of seed priming and micro-dosing of fertilizer on sorghum and pearl millet in Western Sudan.Crossref | GoogleScholarGoogle Scholar |

Badiane A, Faye A, Yamoah CF, Dick RP (2001) Use of compost and mineral fertilizers for millet production by farmers in the semiarid region of Senegal. Biological Agriculture & Horticulture 19, 219–230.
Use of compost and mineral fertilizers for millet production by farmers in the semiarid region of Senegal.Crossref | GoogleScholarGoogle Scholar |

Bagayoko M, George E, Römheld V, Buerkert A (2000) Effects of mycorrhizae and phosphorus on growth and nutrient uptake of millet, cowpea and sorghum on a West African soil. The Journal of Agricultural Science 135, 399–407.
Effects of mycorrhizae and phosphorus on growth and nutrient uptake of millet, cowpea and sorghum on a West African soil.Crossref | GoogleScholarGoogle Scholar |

Bantilan MCS, Deb UK (2003) Impacts of genetic enhancement in pearl millet. In ‘Crop variety improvement and its effect on productivity: the impact of international agricultural research’. (RE Evenson, D Gollin) pp. 215–240. (CABI: Wallingford, UK)

Bationo A, Ntare BR (2000) Rotation and nitrogen fertilizer effects on pearl millet, cowpea and groundnut yield and soil chemical properties in a sandy soil in the semi-arid tropics, West Africa. The Journal of Agricultural Science 134, 277–284.
Rotation and nitrogen fertilizer effects on pearl millet, cowpea and groundnut yield and soil chemical properties in a sandy soil in the semi-arid tropics, West Africa.Crossref | GoogleScholarGoogle Scholar |

Bationo A, Christianson CB, Baethgen WE, Mokwunye AU (1992) A farm-level evaluation of nitrogen and phosphorus fertilizer use and planting density for pearl millet production in Niger. Fertilizer Research 31, 175–184.
A farm-level evaluation of nitrogen and phosphorus fertilizer use and planting density for pearl millet production in Niger.Crossref | GoogleScholarGoogle Scholar |

Blackden M, Canagarajah RS, Klasen S, Lawson D (2003) ‘Gender and growth in Africa: evidence and issues.’ (World Bank: Washington, DC, USA)

Bremner J (2017) Population, food security, and climate change: Africa’s challenges. In ‘Africa’s population: in search of a demographic dividend’. (Eds H Groth, JF May) pp. 403–414. (Springer)
| Crossref |

Brick K, Visser M (2015) Risk preferences, technology adoption and insurance uptake: a framed experiment. Journal of Economic Behavior & Organization 118, 383–396.
Risk preferences, technology adoption and insurance uptake: a framed experiment.Crossref | GoogleScholarGoogle Scholar |

Buerkert A (1995) Effects of crop residues, phosphorus, and spatial soil variability on yield and nutrient uptake of pearl millet (Pennisetum glaucum L.) in southwest Niger. Ph.D. Thesis, University of Hohenheim, Germany.

Chen M (2008) Women and employment in Africa: a framework for action. ‘Second conference of the Africa Commission’. WIEGO Network, Harvard University, p. 44.

Demeyer A, Voundi Nkana JC, Verloo MG (2001) Characteristics of wood ash and influence on soil properties and nutrient uptake: an overview. Bioresource Technology 77, 287–295.
Characteristics of wood ash and influence on soil properties and nutrient uptake: an overview.Crossref | GoogleScholarGoogle Scholar | 11272014PubMed |

Doss CR (2001) Designing agricultural technology for African women farmers: lessons from 25 years of experience. World Development 29, 2075–2092.
Designing agricultural technology for African women farmers: lessons from 25 years of experience.Crossref | GoogleScholarGoogle Scholar |

Ezeaku I, Mohammed S (2006) Character association and path analysis in grain sorghum. African Journal of Biotechnology 5, 1337–1340.

Fukuoka M (1978) ‘The one-straw revolution: an introduction to natural farming.’ Originally published in Japan as Shizen Noho Wara Ippon No Kakumei. Other India Press, Mapusa 403, 507. (New York Review of Books)

Goffner D, Sinare H, Gordon LJ (2019) The Great Green Wall for the Sahara and the Sahel initiative as an opportunity to enhance resilience in Sahelian landscapes and livelihoods. Regional Environmental Change 19, 1417–1428.
The Great Green Wall for the Sahara and the Sahel initiative as an opportunity to enhance resilience in Sahelian landscapes and livelihoods.Crossref | GoogleScholarGoogle Scholar |

Haussmann BIG, Fred Rattunde H, Weltzien-Rattunde E, Traoré PSC, vom Brocke K, Parzies HK (2012) Breeding strategies for adaptation of pearl millet and sorghum to climate variability and change in West Africa. Journal of Agronomy and Crop Science 198, 327–339.
Breeding strategies for adaptation of pearl millet and sorghum to climate variability and change in West Africa.Crossref | GoogleScholarGoogle Scholar |

Hazell PBR, Hess U (2010) Drought insurance for agricultural development and food security in dryland areas. Food Security 2, 395–405.
Drought insurance for agricultural development and food security in dryland areas.Crossref | GoogleScholarGoogle Scholar |

Herrmann L, Haussmann BIG, van Mourik T, Traoré PS, Oumarou HM, Traoré K, Ouedraogo M, Naab J (2013) Coping with climate variability and change in research for development targeting West Africa: need for paradigm changes. Sécheresse 24, 294–303.
Coping with climate variability and change in research for development targeting West Africa: need for paradigm changes.Crossref | GoogleScholarGoogle Scholar |

Hochrainer S, Mechler R, Pflug G (2009) Climate change and financial adaptation in Africa. Investigating the impact of climate change on the robustness of index-based microinsurance in Malawi. Mitigation and Adaptation Strategies for Global Change 14, 231–250.
Climate change and financial adaptation in Africa. Investigating the impact of climate change on the robustness of index-based microinsurance in Malawi.Crossref | GoogleScholarGoogle Scholar |

Jackson C (1985) ‘The Kano river irrigation project: women’s roles and gender differences in development.’ Cases for Planners no. 4. p. 66. (Kumarian Press)

Karanam PV, Vadez V (2010) Phosphorus coating on pearl millet seed in low P Alfisol improves plant establishment and increases stover more than seed yield. Experimental Agriculture 46, 457–469.
Phosphorus coating on pearl millet seed in low P Alfisol improves plant establishment and increases stover more than seed yield.Crossref | GoogleScholarGoogle Scholar |

Kumara O, Naik TB, Palaiah P (2007) Effect of weed management practices and fertility levels on growth and yield parameters in finger millet. Karnataka Journal of Agricultural Science 20, 230–233.

Li J, Chen Z, Guan X, Liu J, Zhang M, Xu B (2008) Optimization of germination conditions to enhance hydroxyl radical inhibition by water-soluble protein from stress millet. Journal of Cereal Science 48, 619–624.
Optimization of germination conditions to enhance hydroxyl radical inhibition by water-soluble protein from stress millet.Crossref | GoogleScholarGoogle Scholar |

Madsen MD, Davies KW, Williams CJ, Svejcar TJ (2012) Agglomerating seeds to enhance native seedling emergence and growth. Journal of Applied Ecology 49, 431–438.
Agglomerating seeds to enhance native seedling emergence and growth.Crossref | GoogleScholarGoogle Scholar |

Manu A, Bationo A, Geiger SC (1991) Fertility status of selected millet producing soils of West Africa with emphasis on phosphorus. Soil Science 152, 315–320.
Fertility status of selected millet producing soils of West Africa with emphasis on phosphorus.Crossref | GoogleScholarGoogle Scholar |

Mcintire J, Fussell LK (1989) On-farm experiments with millet in Niger: crop establishment, yield loss factors and economic analysis. Experimental Agriculture 25, 217–233.
On-farm experiments with millet in Niger: crop establishment, yield loss factors and economic analysis.Crossref | GoogleScholarGoogle Scholar |

Nwankwo CI (2019) Seedball technology development for subsistence-oriented pearl millet production systems in Sahelian West Africa. PhD Thesis, University of Hohenheim, Stuttgart, Germany.

Nwankwo CI, Herrmann L (2018) Viability of the seedball technology to improve pearl millet seedlings establishment under Sahelian conditions: a review of pre-requisites and environmental conditions. International Journal of Agriculture Innovations and Research 6, 261–268.

Nwankwo CI, Herrmann L (2021) Optimisation of the seedball technology for sorghum production under nutrient limitations. Journal of Agriculture and Rural Development in the Tropics and Subtropics 122, 53–59.
Optimisation of the seedball technology for sorghum production under nutrient limitations.Crossref | GoogleScholarGoogle Scholar |

Nwankwo CI, Blaser SRGA, Vetterlein D, Neumann G, Herrmann L (2018a) Seedball-Induced changes of root growth and physico-chemical properties: a case study with pearl millet. Journal of Plant Nutrition and Soil Science 181, 768–776.
Seedball-Induced changes of root growth and physico-chemical properties: a case study with pearl millet.Crossref | GoogleScholarGoogle Scholar |

Nwankwo CI, Mühlena J, Biegert K, Butzer D, Neumann G, Sy O, Herrmann L (2018b) Physical and chemical optimisation of the seedball technology addressing pearl millet under Sahelian conditions. Journal of Agriculture and Rural Development in the Tropics and Subtropics 119, 67–79.
Physical and chemical optimisation of the seedball technology addressing pearl millet under Sahelian conditions.Crossref | GoogleScholarGoogle Scholar |

Obeng E, Cebert E, Singh BP, Ward R, Nyochembeng LM, Mays DA (2012) Growth and grain yield of pearl millet (Pennisetum glaucum) genotypes at different levels of nitrogen fertilization in the southeastern United States. Journal of Agricultural Science 4, 155
Growth and grain yield of pearl millet (Pennisetum glaucum) genotypes at different levels of nitrogen fertilization in the southeastern United States.Crossref | GoogleScholarGoogle Scholar |

Ousseini I (1986) Etude de la répartition des formations sableuses et interprétation des dépôts éoliens dans le Liptako oriental (Rép. Du Niger). PhD Dissertation, Pierre and Marie Curie University (Paris 6), Paris, France.

Pan WL, Madsen IJ, Bolton RP, Graves L, Sistrunk T (2016) Ammonia/ammonium toxicity root symptoms induced by inorganic and organic fertilizers and placement. Agronomy Journal 108, 2485–2492.
Ammonia/ammonium toxicity root symptoms induced by inorganic and organic fertilizers and placement.Crossref | GoogleScholarGoogle Scholar |

Raj SN, Shetty NP, Shetty HS (2004) Seed bio-priming with Pseudomonas fluorescens isolates enhances growth of pearl millet plants and induces resistance against downy mildew. International Journal of Pest Management 50, 41–48.
Seed bio-priming with Pseudomonas fluorescens isolates enhances growth of pearl millet plants and induces resistance against downy mildew.Crossref | GoogleScholarGoogle Scholar |

Rebafka FP (1993) ‘Deficiency of phosphorus and molybdenum as major growth limiting factors of pearl millet and groundnut on an acid sandy soil in Niger, West Africa.’ Hohenheimer Bodenkundliche Hefte 9. (Soil Science and Land Evaluation of the University of Hohenheim: Stuttgart, Germany)

Rebafka F-P, Bationo A, Marschner H (1993) Phosphorus seed coating increases phosphorus uptake, early growth and yield of pearl millet (Pennisetum glaucum (L.) R. Br.) grown on an acid sandy soil in Niger, West Africa. Fertilizer Research 35, 151–160.
Phosphorus seed coating increases phosphorus uptake, early growth and yield of pearl millet (Pennisetum glaucum (L.) R. Br.) grown on an acid sandy soil in Niger, West Africa.Crossref | GoogleScholarGoogle Scholar |

Saxena A, Singh DV, Joshi NL (1996) Autotoxic effects of pearl millet aqueous extracts on seed germination and seedling growth. Journal of Arid Environments 33, 255–260.
Autotoxic effects of pearl millet aqueous extracts on seed germination and seedling growth.Crossref | GoogleScholarGoogle Scholar |

Sivakumar MVK (1988) Predicting rainy season potential from the onset of rains in southern Sahelian and Sudanian climatic zones of West Africa. Agricultural and Forest Meteorology 42, 295–305.
Predicting rainy season potential from the onset of rains in southern Sahelian and Sudanian climatic zones of West Africa.Crossref | GoogleScholarGoogle Scholar |

Sultan B, Roudier P, Quirion P, Alhassane A, Muller B, Dingkuhn M, Baron C (2013) Assessing climate change impacts on sorghum and millet yields in the Sudanian and Sahelian savannas of West Africa. Environmental Research Letters 8, 014040
Assessing climate change impacts on sorghum and millet yields in the Sudanian and Sahelian savannas of West Africa.Crossref | GoogleScholarGoogle Scholar |

Valluru R, Vadez V, Hash CT, Karanam P (2010) A minute P application contributes to a better establishment of pearl millet (Pennisetum glaucum (L.) R. Br.) seedling in P deficient soils. Soil Use and Management 26, 36–43.
A minute P application contributes to a better establishment of pearl millet (Pennisetum glaucum (L.) R. Br.) seedling in P deficient soils.Crossref | GoogleScholarGoogle Scholar |

van Duivenbooden NV, Cissé L (1993) Fertilization of millet cv. Souna III in Senegal: dry matter production and nutrient uptake. Nutrient Cycling in Agroecosystems 35, 217–226.

Voortman RL (2010) Explorations into African land resource ecology: on the chemistry between soils, plants and fertilizers, no. 20123011392. PhD Thesis, Vrije Universiteit Amsterdam, Amsterdam, the Netherlands.

WRB IWG (2015) World Reference Base for soil resources 2014, update 2015: international soil classification system for naming soils and creating legends for soil maps. World Soil Resources Reports no. 106. (International Union of Soil Sciences)