Potato (Solanum tuberosum L.) growth and yield response to inflorescence removal and seed tuber size in Girar Jarso District, Central Ethiopia

Authors

  • Bacha Tamiru Abebe thiopian Biodiversity Institute Addis Ababa Author https://orcid.org/0009-0006-8444-8487
  • Girma Megersa Geleta Salale University Agricultural and Natural Science College, Ethiopia Author

DOI:

https://doi.org/10.51258/RJH.2025.11

Keywords:

Gudenie cultivar, flower, source-sink, assimilate partitioning, tuber yield

Abstract

Potato (Solanum tuberosum L.) is an important food security crop in Ethiopia. The low yield is caused in part by farmers using non-essential seed tuber size and poor agronomic management. This study aimed to examine the effects of seed tuber size and inflorescence removal on yield components and potato yield. A field experiment was carried out at the experimental site of General Tadese Biru Campus, Salale University. Three levels of inflorescence removal and seed tuber sizes each comprised the treatments. The RCBD with a 3x3 factorial arrangement and 3 replications was used for the study. The R software version 4.03 was used to experiment with data. The experimental results showed that the interaction of big seed tuber size and flower bud removal led to the highest total tuber yield (34.64 t ha-1). Large seed tuber size (46-55 mm) and inflorescence removal led to the highest marketable tuber yield (28.59 t ha-1). Marketable tuber yield correlated positively with steam number, plant height, tuber number, tuber yield, tuber weight, tuber diameter, tuber length, and total tuber, but negatively with days to emergence. As a result, big seed tuber size and inflorescence removal were preferable in terms of all yield-contributing characteristics and tuber yield, and medium seed tuber size was beneficial to the economic and agronomical feasibility of potato production. Because the study was limited to a single season and location, more research is needed to make viable recommendations.

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References

Abera, W., Hussein, S., Derera, J., Worku, M. and Laing, M.D. (2013). Preferences and constraints of maize farmers in the development and adoption of improved varieties in the mid-altitude, sub-humid agro-ecology of western Ethiopia.

Adem, S.A. (2021). Impacts of rainfall variability on potato productivity in Haramaya district, eastern Hararge zone, Ethiopia. Journal of Chemical, Environmental and Biological Engineering, 5(1), pp.9-22.

Alemayehu, M. and Jemberie, M. (2018). Optimum rates of NPS fertilizer application for economically profitable production of potato varieties at Koga Irrigation Scheme, Northwestern Ethiopia. Cogent Food & Agriculture, 4(1), p.1439663.

Ali Faramarzi, Shahram Shahrokhi, Hadi Mehrpouya, Davood Hasan Panah (2011), Evaluation of inflorescence removing and salinity anti-stress matter application effects on potato, Solanum tuberosum (cv. Agria) yield, 2011 International Conference on Biology, Environment and Chemistry IPCBEE vol.24

Asalfew, G. K. (2016). Review on the effect of gibberellic acid on potato (Solanum tuberosum L.) tuber dormancy breaking and sprouting. Journal of Biology, Agriculture and Healthcare, 6(7), 68-79.

Asnake, D., Alemayehu, M., & Asredie, S. (2023). Growth and tuber yield responses of potato (Solanum tuberosum L.) varieties to seed tuber size in northwest highlands of Ethiopia. Heliyon, 9(3).

Bartholdi, W.L. (1942). Influence of flowering and fruiting upon vegetative growth and tuber yield in the potato.

Central Statistical Agency (CSA) .(2020/21). Agricultural sample survey, Report on area and production of crops. Vol. 1 Addis Ababa, Ethiopia 14-26.

Central Statistical Agency (CSA).(2016). Agricultural sample survey Report on area and production of crops, Addis Ababa, Ethiopia.

Central Statistical Agency (CSA).(2020). Agricultural sample survey, Report on area and production of crops. Vol.1 Addis Ababa, Ethiopia 14-26.

Desalegn, G., Turetschek, R., Kaul, H.P. and Wienkoop, S. (2016). Microbial symbionts affect Pisum sativum proteome and metabolome under Didymella pinodes infection. Journal of proteomics, 143, pp.173-187.

Doboch, M., Gedebo, A., Haile, A., & Beshir, H. M. (2022). Improving potato productivity through optimum agronomic management to ensure food security of smallholder farmers. Cogent Food & Agriculture, 8(1), 2131995.

Ebrahim, S., Mohammed, H., & Ayalew, T. (2018). Effects of seed tuber size on growth and yield performance of potato (Solanum tuberosum L.) varieties under field conditions. African Journal of Agricultural Research, 13(39), 2077-2086.

Eid, M.A., Abdel-Salam, A.A., Salem, H.M., Mahrous, S.E., Seleiman, M.F., Alsadon, A.A., Solieman, T.H. and Ibrahim, A.A. (2020), Interaction Effects of Nitrogen Source and Irrigation Regime on Tuber Quality, Yield, and Water Use Efficiency of Solanum tuberosum L. Plants, 9(1): 110

Engels, C., Kirkby, E. and White, P. (2012). Mineral nutrition, yield and source–sink relationships. In Marschner's mineral nutrition of higher plants (pp. 85-133). Academic Press.

Ethiopian Agricultural Research Organization (EARO).(2004). Directory of released crop varieties and their recommended cultural practices. Ethiopian Agricultural Research Organization, Addis Ababa, Ethiopia pp. 1-36.

Fayera, W. N. (2017). Yield And Yield Components Of Potato (Solanum Tuberosum L.) As Influenced By Planting Density And Rate Of Nitrogen Application At Holeta, West Oromia Region Of Ethiopia. African Journal Of Agricultural Research, 12, 2242–2254. Doi:10.5897

Food and Agricultural Organization Corporate Statistical Database (FAOSTAT). (2019). Food and Agriculture Organization of the United Nations Statistics Division. Rome.

Fuentes, S., Gibbs, A. J., Adams, I. P., Hajizadeh, M., Kreuze, J., Fox, A., ... & Jones, R. A. (2022). Phylogenetics and evolution of potato virus V: Another potyvirus that originated in the Andes. Plant Disease, 106(2), 691-700.

Gebregwergis Fitsum, Mehari Gebremichael, and Hailay Gebremedhin (2019), Flower Bud Removal and Earthing Up Time Increased Growth and Tuber Yield of Potato at Eastern Tigray, Ethiopia. Indonesian Journal of Agricultural Science Vol. 20 No. 2 December 2019: 77–85

Gebreselassie, H., & Ajema, L. (2022). Correlation, Path Coefficient and Multivariate Analysis for Yield and Yieldassociated Traits among Potato (Solanum tuberosum L.) Genotypes Grown in Eastern Ethiopia. World J. Agric. Soil Sci, 8(2), 1-7.

Hailu Gebru, Ali Mohammed, Nigussie Dechassa and Derbew Belew (2017), Assessment of production practices of smallholder potato (Solanum tuberosum L.) farmers in Wolaita zone, southern Ethiopia. Agric & Food Secururity 6:31

Hanász, A., Zsombik, L., Magyar-Tábori, K., & Mendler-Drienyovszki, N. (2024). Effect of drought and seed tuber size on agronomical traits of potato (Solanum tuberosum L.) under in vivo conditions. Agronomy, 14(6), 1131.

Hasani, R., Lechner, M., Wang, T.H., Chahine, M., Amini, A. and Rus, D. (2022). Liquid structural state-space models. arXiv preprint arXiv:2209.12951.

Hassen Yassin, A.M., Fekadu, D. and Hussen, S. (2013). Effect of flower bud removal on growth and yield of anchote root (Coccinia abyssinica (Lam.) Cogn.) accessions at Bishoftu. Advanced Research Journal of Plant and Animal Sciences, 1(1), pp.7-13.

Isaacs, K. B., Snapp, S. S., Chung, K., & Waldman, K. B.(2016). Assessing the value of diverse cropping systems under a new agricultural policy environment in Rwanda. Food Security, 8, 491-506.

Masarirambi, M.T., Mandisodza, F.C., Mashingaidze, A.B. and Bhebhe, E. (2012). Influence of plant population and seed tuber size on growth and yield components of potato (Solanum tuberosum). Int. J. Agric. Biol, 14(4), pp.545-549.

Moges, H. (2022). Effects of Seed Tuber Size and Intra Row Spacing on Growth And Tuber Yield of Potato (Solanum Tuberosum L.) At Koga Irrigation Scheme, North Mecha District, Amhara Region, Ethiopia

Salim, M. and Akte, M.A.R. (2023). Effect of different natural storage conditions on keeping quality of potato at Munshiganj Region of Bangladesh.

Soresa, D. N. (2025). Effect of flower bud on tuber yield and quality of potato (Solanum tuberosum L.) varieties in Horo District, Western Ethiopia.

Wudu, D. M., Kassa, M. W., & Demissie, B. N. (2024). Tuber yield components of potato (Solanum tuberosum l.) as influenced by earthing up and inflorescence removal. Romanian Journal Of Horticulture Учредители: Academia de Stiinte Agricole si Silvice'Gheorghe Ionescu-Sisesti', 5, 61-68.

Yazie Chanie, Y.C., Akalu Teshome, A.T., Yalfal Temesgen, Y.T. and Baye Berihun, B.B. (2017). Characterization of potato production, marketing, and utilization in North Western Amhara Region, Ethiopia.

Zebenay, D., Dechassa, N. and Mohammed, W. (2018). Influence of Plant Spacing and Seed Tuber Size on Yield and Quality of Potato (Solanum tuberosum L.) in Central Ethiopia. Journal of Advances in Crop Science and Technology, 6:6. DOI: 10.4172/2329-8863.1000406

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Published

2025-12-12

How to Cite

(1)
Abebe, B. T.; Megersa Geleta, G. Potato (Solanum Tuberosum L.) Growth and Yield Response to Inflorescence Removal and Seed Tuber Size in Girar Jarso District, Central Ethiopia. RJH 2025, 6, 125-132. https://doi.org/10.51258/RJH.2025.11.

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