Research Achievements in Relation to Maize (Zea mays L) Crop Production and Productivity in Ethiopia: A Systematic Review

Dessalegn Ayana

Department of Plant Science, College of Agriculture and Natural Resources, Assosa University, Assosa, Ethiopia

DOI: https://doi.org/10.36956/rwae.v2i3.423

Received: 17 June 2021; Accepted: 15 July 2021; Published Online: 31 July 2021

Copyright © 2021 Dessalegn Ayana. Published by Nan Yang Academy of Sciences Pte. Ltd.

Creative Commons LicenseThis is an open access article under the Creative Commons Attribution-NonCommercial 4.0 International (CC BY-NC 4.0) License.


Abstract

Despite the conducting much number of maize researches in different centers a little change on production and productivity in Ethiopia. Hence this review aimed to indicate how a maize production and productivity have been developed and used to inform that food security concern body of the country. I researched for different papers reporting maize production achievements, databases of peer review journal articles, scholar Google and other web sites.  A total of 70 papers were reviewed from which 20 papers are included and from this 51.2% describe about maize production, 34.6% describe about productivity of a crop per area and 14.2% describe about deficiency of agricultural input utilization by local farmers. The use of new crop variety and artificial fertilizers is relatively a wide spread throughout the country.  However, practical application on small holder’s field has less technical support and comparatively traditional way of crop managements have been involved. Most of the research findings, particularly those from agronomic practices, indicated that Maize has wide flexibility that is suitable for production.

Keywords: Research Achievements, Maize, Production and Productivity


References

[1] FAOSTAT, 2010. Food and Agriculture Organization Statistical Database: http://faostat.fao.org. Accessed on September 10/2017.

[2] FAOSTAT, 2013. Food and Agriculture Organization Statistical Database: http://faostat.fao.org.

[3] MOA. (2005). New agro-ecological zones of Ethiopia. Addis Ababa: Ministry of Agriculture

[4] Chikoye D, Schulz S, Ekeleme F (2004) Evaluation of integrated weed management practices for maize in the northern Guinea savanna of Nigeria. Crop Protection 23: 895-900.

[5] Chikoye D, Udensi UE, Fontem A, Lum (2005) Evaluation of a new formulation of atrazine and metolachlor mixture for weed control in maize in Nigeria. Crop Protection 24:1016-1020.

[6] Abate, T. (2007). Focusing agricultural research to address development needs: Direction for agricultural research in Ethiopia. Addis Ababa: EIAR.

[7] Asresie Hassen, Molla Tafere, Mekonen Tolla, Abel Ahmed, Seferew Dagnew, Yihenew G.Selassie, Desallegn Molla and Alemu Worku .2015. Best fit practice on reduced tillage for maize production BDU-CASCAPE Technical working paper no 9.

[8] Central Statistical Agency (CSA). 2013. Area and production of major crops. Agricultural sample survey2012/13, private, peasant holdings, Meher season, Statistical Bulletin 532, Addis Ababa, Ethiopia.

[9] Central Statistics Agency (CSA). 2014.Agricultural sample survey report onprivate peasant holdings, meher season 2013/20014 VOLUME I, Addis Abeba, Ethiopia.

[10] Casal, J.J., Deregibus, V.A.and Sánchez, R.A., 1985. Variations in tiller dynamics and morphology in Lolium multiflorum Lam. vegetative and reproductive plants as affected by differences in red/far-red irradiation. Annals of Botany, 56:533-559.

[11] Vega, C. R. C., Andrade, F. H. and Sadras, V. O. 2001. Reproductive partitioning and seed set efficiency in soybean, sunflower and maize. Field Crop Research, 72: 165-173.

[12] Gardner, F.P., Pearce, R.B. and Mitchell, R.L., 1985. Physiology of crop plants. Ames Iowa State University.

[13] Sangoi, L. and Salvador, R.J. 1998. Influence of plant height and leaf number on maize production at high plant densities. Pesquisa Agropecuária Brasileira, 33:3, pp.297-306.

[14] Onwueme, I. C. and Sinha, T. D. 1991. Field crops production in tropical Africa. Technical Center for Agricultural and Rural Co-operation (CTA), the Netherlands. pp.159-170.

[15] Gonzalo M., T.J. Vyn, J.B. Holland and L.M. Mcintre. 2006. Mapping Density Response in Maize : A Direct Approach for Testing Genotype and Treatment Interactions. Genetics, 173 (1):331-348.

[16] Amona Tolka 2014 Effect of Varieties and Plant Density on Yield and Yield Components of Maize (Zea mays L.) in Ofa District, Gesuba, Southern Ethiopia, Msc. Thesis Haramaya Universsity, Haramaya Ethiopia.

[17] Tolera Abera, Daba Feyisa, and D. K. Friesen (2009) Effects of Crop Rotation and N-P Fertilizer Rate on Grain Yield and Related Characteristics of Maize and Soil Fertility at Bako, Western Oromia, Ethiopia, East African Journal of Sciences 3 (1): 70-79

[18] Walelign Worku. 2004. Maize-tef relay intercropping as affected by maize planting pattern and leaf removal in southern Ethiopia. African Crop Science Journal. 12(4):358 367

[19] Wondimu Bayu, Molla Addisu, Besufekad Tadesse and Legesse Admassu, 2007. Intercropping tef and sunflower in semi-arid areas of Wello, Ethiopia. Trop. Sci., 47(1): 16–21.

[20] Tesfay A, Amin M, Mulugeta N (2014) Management of Weeds in Maize (Zea maysL.) through Various Pre and Post Emergency Herbicides. Adv Crop Sci Tech 2: 151

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