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Grain Quality and Yield Response of Malt Barley Varieties to Nitrogen Fertilizer Rates in the West Arsi, Oromia Reginal State of Ethiopia

Received: 2 January 2024    Accepted: 31 January 2024    Published: 13 March 2024
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Abstract

Grain yield and yield components of malt barley (Hordeum vulgare L.) were investigated concerning varieties and nitrogen application rates. A field experiment was conducted to evaluate (i) the optimal fertilizer level for maximum yield and quality of malt barley varieties (ii) to determine the impacts of nitrogen fertilizer rate, vaieties and growing season on yield and yield components of malt barley. Three malt barley varieties (Ibon, Bekoji 1, and EH1847) and four fertilizer rates (RNP kg ha-1, 150% RNP kg ha-1, 200% RNP kg ha-1 and RNPS kg ha-1) were studied over two growing season (2019 and 2020) in a factorial arrangement of randomized complete block design (RCBD) and replicated three times. The main effects of- variety and fertilizer rate were significantly (P<0.01) variation, on grain yield, biomass yield, hectolitre weight and thousand kernel weight, while plant height, spike length and grain protein content showed significant (P<0.05) variations. The interaction effect of variety and fertilizer rate on the number of grains per spike indicated significant (P<0.001) variation. The use of a 200% RNP kg ha-1 fertilizer rate resulted in a higher (4152.9 kg ha-1) grain yield. The highest (33.1) number of grain per spike was produced from the combination of 150% RNP kg ha-1 fertilizer rate with Bekoji 1 malt barley variety, Like wise higher (48.6) thousand kernel weight was produced from RNPS. The results of this study indicated that, the importance of using appropriate malt barley variety and fertilizer rate to increase the yield of malt barley with acceptable grain quality in the study area. Hence application of 150% RNP and 200% RNP kg ha-1 gave a grain yield of (3582.81 kg ha-1) and (4152.9 kg ha-1, and economic benefit of 5.99 (ETB) and 3.65 (ETB) respectively. Among malt barley varieties highest (4110.4) and (3538.3) kg ha-1 grain yield was recorded from EH1847 and Bekoji 1 verities respectively. The production of malt barley with higher yield, optimal kernel protein concentration and higher economic benefit was obtained via EH1847 malt barley varieties along with 150% RNP and 200% kg ha-1 fertilizer rate in the study area and similar agro ecologies.

Published in Bioprocess Engineering (Volume 8, Issue 1)
DOI 10.11648/j.be.20240801.11
Page(s) 1-9
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

Barley Variety, Grain Yield, Fertilizer Rate, Grain Quality

References
[1] Abebe, A. (2018). Effects of blended fertilizer rates on growth, yield and quality of malt barley (Hordeum distichum l) varieties at Debre berhan district central high land of ethiopia (doctoral dissertation).
[2] Addisu, B. A., 2018. Malt barley commercialization through contract farming scheme: A systematic review of experiences and prospects in Ethiopia. African Journal of Agricultural Research, 13(53), pp. 2957-2971.
[3] Agegnehu G, Lakew B, Nelson PN. 2014. Cropping sequence and nitrogen fertilizer effects on the productivity and quality of malting barley and soil fertility in the Ethiopian highlands. Arch. Agron. Soil Sci. 60: 1261-1275.
[4] Ahmad, Z., Ullah, A. S., Muhammad, M., Muhammad, Z. and Muhammad, S. M. (2008). Genetic diversity for morphogenetic traits in barley germplasm. Pakistan J. botany, 40(3): 1217- 1224.
[5] Ali M. 2014. Improvement in wheat (Triticum aestivum L.) Yield by manipulating seed rate and row spacing in vehari zone. Adaptive Research Farm, Vehari. Journal of Animal and Plant sciences, 20 4): 225–230.
[6] Amare, A. and Adane, L., 2015. Grain quality and yield response of malt barley varieties to nitrogen fertilizer on brown soils of Amhara Region, Ethiopia. World Journal of Agricultural Sciences, 11(3), pp. 135-143.
[7] Anonymous. 2012. Progress report of All India coordinated wheat and barley improvement project. 2011- 12. Vol. VI. Barley network. Directorate of Wheat Research, Kernel, India.
[8] Assefa Fenta, Maqsood, M., Akbar, M. and Yousaf, N. 2017. Effect of urea fertilizer on growth response of food barley. International of Journal Agricultural Biology, 1: 359-36.
[9] Atwell, W. A. and Finnie, S., 2011. Wheat flour. Elsevier.
[10] Bagheri A. & Sadeghipour O. 2009. Effects of salt stress on yield, yield components and carbohydrates content in four hulls less barley (Hordeum vulgare L.) cultivars. Journal of Biological Science, 9: 909-912.
[11] Bayeh, B., 2010. Assessment of bread wheat production, marketing and selection of N- efficient bread wheat (Tritium aestivum L.) varieties for higher grain yield and quality in North Western Ethiopia (Doctoral dissertation, Bahir Dar University).
[12] Bekele, T., Sertsu, S., Tanner, D. G., Assen, Y., Gebre, T., Hassena, M., Tessemma, T. and Gorfu, A., 2002. Optimizing Fertilizer Use in Ethiopia Correlation of Soil Analysis with Fertilizer Response in Hetosa Wereda, Arsi Zone.
[13] Berhane Lakew and Mulatu Bayeh. 2011. Barley research and development in Ethiopia. PP. 1-15. Proceedings of the second national barley research and development review workshop. 28-30 November 2006. Holetta, Ethiopia.
[14] Biruk Gezahegn and Demelash Kefale, 2016. Effect of nitrogen fertilizer level on grain yield and quality of malt barley varieties in Malga Woreda, Southern Ethiopia. Food Science and Quality Management, 52: 2224-6088.
[15] Chala, G., Chindi, A. and Obsa, Z., 2017. Response of Applied Phosphorus Fertilizer Rate and Plant Spacing for Potato. Greener Journal of Agricultural Sciences, 7(9), pp. 255-262.
[16] CSA (Central Statistical Agency). 2021. “Report on Area and Production of Major Cereals (Private Peasant Holdings, Meher Season).” Agricultural Sample Survey, Statistical Bulletin No 590. Volume 1." Addis Ababa, Ethiopia.
[17] Derebe Terefe, Temesgen Desalegn, Habtamu Ashagre. 2018. Effect of Nitrogen Fertilizer Levels on Grain Yield and Quality of Malt Barley (Hordeum Vulgare L.) Varieties at Wolmera District, Central Highland of Ethiopia.. International Journal of Research Studies in Agricultural Sciences, 4(4): 29-43.
[18] El-banna, M. N., EL-Gawad Nassir, M. A. A., Mohammed, M. N. and EL-Azeem Boseely, M. A. (2011). Evaluation of 16 barley genotypes under calcareous soil conditions in Egypt. J. Agri. Sci., 3(1): 105-121.
[19] EQSA (Ethiopia Quality Standards Authority). 2006. Malting barley specification. Addis Ababa, Ethiopia.
[20] FAO (Food and Agriculture Organization of the United Nations). 2013. Global production of barley. Faostat 2013.
[21] Glen P. F., Kelly A., Poulson D., Inkerm A. and Henry R. 2006. Selecting for increased barley grain size Journal of cereal science, 43 (2): 198–208.
[22] Halvorson, A. D., and C. A. Reule. 2007. “Irrigated, No-Till Corn and Barley Response to Nitrogen in Northern Colorado.” Agron. J. 99: 1521–1529.
[23] ICARDA., 2016. New malt barley varieties perk up farmers and malting industry in Ethiopia. May 26, 2016, The Ethiopian Institute of Agricultural Research, Adiss Ababa. http://www. icarda.org
[24] IUSS Working Group WRB. 2014. World Reference Base for Soil Resources 2014.
[25] International Soil Classification System for Naming Soils and Creating Legends for Soil Maps. World Soil Resources Reports No. 106. FAO, Rome, Italy, 2014.
[26] Jemal, A., Tamado, T., & Firdissa, E. (2015). Response of bread wheat (Triticum aestivum L.) varieties to seeding rates at Kulumsa, south eastern Ethiopia. Asian Journal of Plant Sciences, 14 (2), 50-58.
[27] Johnston, Adrian, Scott Murrell and Cynthia Grant. 2007. Nitrogen Fertilizer Management of Malting Barley: Impacts of Crop and Fertilizer Nitrogen Prices (Prairie Provinces and Northern Great Plains States).
[28] Kavitha G., Dhindsa G. S., Singh S. and Singh J. 2009. Stability analysis of yield and its components in malt barley (Hordeum vulgare L.) genotypes. Journal of Crop Improvement, 36 (1): 29–34.
[29] Kefale, B. G. D., & Hawassa, E. (2016). Effect of nitrogen fertilizer level on grain yield and quality of malt barley (Hordeum vulgare L.) varieties in malga woreda, southern ethiopia.
[30] Lakew, B., Gebre, H. and Alemayehu, F., 1996. Barley poduction and research. M. A. (2011). Evaluation of 16 barley genotypes under calcareous soil conditions in Egypt. J. Agri. Sci., 3(1): 105-121.
[31] Lapitan NL, Hess A, Cooper B, Botha AM, Badillo D, Iyer H, Menert M, Close T, Wright L, Hanning G. 2009. Differentially expressed genes during malting and correlation with malting quality phenotypes in barley (Hordeum vulgare L.). Theor. Appl. Genet. 118: 937-952.
[32] McKenzie R and Jackson G. 2005. Barley Production in Semiarid Regions-Making the Malting Grade. Better Crops 89 (4).
[33] Melesse Harfe. 2007. Response of bread wheat (Triticum aestivum L.) varieties to N and P fertilizer rates in Ofla district, Southern Tigray, Ethiopia. African Journal of Agricultural Research, 12(19): 1646-1660.
[34] Minale Liben, Alemayehu Assefa. & Tilahun Tadesse. 2011. Grain yield and malting quality of barley in relation to nitrogen application at mid and high altitude in Northwest Ethiopia. Journal of Science and Development, 1(1): 75-88.
[35] R. Eshghi and E. Akhundova, “Genetic diversity in hulless barley based on agro morphological traits and RAPD markers and comparison with storage protein analysis,” African Journal of Agricultural Research, vol. 5, no. 1, pp. 97–107, 2010.
[36] Rashid A., Khan U. K. & Khan, D. J. 2008. Comparative effect of varieties and fertilizer levels on barley (Hordeum vulgare L). Pakistan Journal of Soil Science, 1: 1-13.
[37] Rick G., Ian M., Nick M. and Neroli G. 2014. Western Australian malting barley varietal recommendations.
[38] Shahryari, R. and Mollasadeghi, V. (2011). Correlation study of some traits affecting yield and yield components of wheat genotypes in terms of normal irrigation and end drought stress. Advances in Envir. Biol., 5(3): 523-527.
[39] Shahzad, M. A., Sahi, S. T., Khan, M. M., & Ahmad, M. (2007). Effect of sowing dates and seed treatment on grain yield and quality of wheat. Pakistan Journal of Agricultural Sciences (Pakistan).
[40] Singh N. P. and Singh R. A. 2014. Scientific crop production, press Graphics, Delhi-28, 1st (e. d) India.
[41] Sukram, P., Tejveer, S. and Ramesh, B., 2010. Estimation of genetic parameters in barley (Hordeum vulgare L.). Crop Improvement, 37(1), pp. 52-56.
[42] Tadesse, K., Mekonnen, A., Admasu, A., Admasu, W., Habte, D., Tadesse, A. and Tilahun, B., 2018. Malting barley response to integrated organic and mineral nutrient sources in Nitisol. International Journal of Recycling of Organic Waste in Agriculture, 7, pp. 125-134.
[43] Upendra, M. S., A. W., Lenssen, and J. L. Barsotti. 2013. “Dryland Malt Barley Yield and Quality Affected by Tillage, Cropping Sequence, and Nitrogen Fertilization.” Agron. J. 105: 329–340.
[44] Wakene N., G. Fite, D. Abdena and D. Berhanu. (2007). Integrated use of organic and inorganic fertilizers for Maize production. Utilization of diversity. In utilization of diversity in land use system: Sustainable and organic approaches to meet human needs. Conference Tropentag (pp. 9-12).
[45] Wakene Tigre, Walelign Worku & Wassie Haile. 2014. Effects of nitrogen and phosphorus fertilizer levels on growth and development of barley (Hordeum vulgare L.) at Bore district, Southern Oromia, Ethiopia. 2(5): 260-266.
[46] Yetsedaw Aynewa., Tadesse Dessalegn. & Wondimu Bayu. 2013. Participatory evaluation of malt barley (Hordeum vulgare L.) genotypes for yield and other agronomic traits at North West Ethiopia. 2(8): 218–222.
[47] Zewdie Bishaw, Paul C. Struik and Anthony J. G. 2014. Assessment of on-farm diversity of wheat varieties and landraces: evidence from farmer’s field in Ethiopia. African Journal of Agricultural Research, 9 (38): 2948–2963.
Cite This Article
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    Shimelis, F., Bekele, D., Mulatu, Z., Dobocha, D., Admasu, A., et al. (2024). Grain Quality and Yield Response of Malt Barley Varieties to Nitrogen Fertilizer Rates in the West Arsi, Oromia Reginal State of Ethiopia. Bioprocess Engineering, 8(1), 1-9. https://doi.org/10.11648/j.be.20240801.11

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    ACS Style

    Shimelis, F.; Bekele, D.; Mulatu, Z.; Dobocha, D.; Admasu, A., et al. Grain Quality and Yield Response of Malt Barley Varieties to Nitrogen Fertilizer Rates in the West Arsi, Oromia Reginal State of Ethiopia. Bioprocess Eng. 2024, 8(1), 1-9. doi: 10.11648/j.be.20240801.11

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    AMA Style

    Shimelis F, Bekele D, Mulatu Z, Dobocha D, Admasu A, et al. Grain Quality and Yield Response of Malt Barley Varieties to Nitrogen Fertilizer Rates in the West Arsi, Oromia Reginal State of Ethiopia. Bioprocess Eng. 2024;8(1):1-9. doi: 10.11648/j.be.20240801.11

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  • @article{10.11648/j.be.20240801.11,
      author = {Fasil Shimelis and Debela Bekele and Zenebe Mulatu and Dereje Dobocha and Almaz Admasu and Wogayehu Worku},
      title = {Grain Quality and Yield Response of Malt Barley Varieties to Nitrogen Fertilizer Rates in the West Arsi, Oromia Reginal State of Ethiopia},
      journal = {Bioprocess Engineering},
      volume = {8},
      number = {1},
      pages = {1-9},
      doi = {10.11648/j.be.20240801.11},
      url = {https://doi.org/10.11648/j.be.20240801.11},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.be.20240801.11},
      abstract = {Grain yield and yield components of malt barley (Hordeum vulgare L.) were investigated concerning varieties and nitrogen application rates. A field experiment was conducted to evaluate (i) the optimal fertilizer level for maximum yield and quality of malt barley varieties (ii) to determine the impacts of nitrogen fertilizer rate, vaieties and growing season on yield and yield components of malt barley. Three malt barley varieties (Ibon, Bekoji 1, and EH1847) and four fertilizer rates (RNP kg ha-1, 150% RNP kg ha-1, 200% RNP kg ha-1 and RNPS kg ha-1) were studied over two growing season (2019 and 2020) in a factorial arrangement of randomized complete block design (RCBD) and replicated three times. The main effects of- variety and fertilizer rate were significantly (P-1 fertilizer rate resulted in a higher (4152.9 kg ha-1) grain yield. The highest (33.1) number of grain per spike was produced from the combination of 150% RNP kg ha-1 fertilizer rate with Bekoji 1 malt barley variety, Like wise higher (48.6) thousand kernel weight was produced from RNPS. The results of this study indicated that, the importance of using appropriate malt barley variety and fertilizer rate to increase the yield of malt barley with acceptable grain quality in the study area. Hence application of 150% RNP and 200% RNP kg ha-1 gave a grain yield of (3582.81 kg ha-1) and (4152.9 kg ha-1, and economic benefit of 5.99 (ETB) and 3.65 (ETB) respectively. Among malt barley varieties highest (4110.4) and (3538.3) kg ha-1 grain yield was recorded from EH1847 and Bekoji 1 verities respectively. The production of malt barley with higher yield, optimal kernel protein concentration and higher economic benefit was obtained via EH1847 malt barley varieties along with 150% RNP and 200% kg ha-1 fertilizer rate in the study area and similar agro ecologies.
    },
     year = {2024}
    }
    

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  • TY  - JOUR
    T1  - Grain Quality and Yield Response of Malt Barley Varieties to Nitrogen Fertilizer Rates in the West Arsi, Oromia Reginal State of Ethiopia
    AU  - Fasil Shimelis
    AU  - Debela Bekele
    AU  - Zenebe Mulatu
    AU  - Dereje Dobocha
    AU  - Almaz Admasu
    AU  - Wogayehu Worku
    Y1  - 2024/03/13
    PY  - 2024
    N1  - https://doi.org/10.11648/j.be.20240801.11
    DO  - 10.11648/j.be.20240801.11
    T2  - Bioprocess Engineering
    JF  - Bioprocess Engineering
    JO  - Bioprocess Engineering
    SP  - 1
    EP  - 9
    PB  - Science Publishing Group
    SN  - 2578-8701
    UR  - https://doi.org/10.11648/j.be.20240801.11
    AB  - Grain yield and yield components of malt barley (Hordeum vulgare L.) were investigated concerning varieties and nitrogen application rates. A field experiment was conducted to evaluate (i) the optimal fertilizer level for maximum yield and quality of malt barley varieties (ii) to determine the impacts of nitrogen fertilizer rate, vaieties and growing season on yield and yield components of malt barley. Three malt barley varieties (Ibon, Bekoji 1, and EH1847) and four fertilizer rates (RNP kg ha-1, 150% RNP kg ha-1, 200% RNP kg ha-1 and RNPS kg ha-1) were studied over two growing season (2019 and 2020) in a factorial arrangement of randomized complete block design (RCBD) and replicated three times. The main effects of- variety and fertilizer rate were significantly (P-1 fertilizer rate resulted in a higher (4152.9 kg ha-1) grain yield. The highest (33.1) number of grain per spike was produced from the combination of 150% RNP kg ha-1 fertilizer rate with Bekoji 1 malt barley variety, Like wise higher (48.6) thousand kernel weight was produced from RNPS. The results of this study indicated that, the importance of using appropriate malt barley variety and fertilizer rate to increase the yield of malt barley with acceptable grain quality in the study area. Hence application of 150% RNP and 200% RNP kg ha-1 gave a grain yield of (3582.81 kg ha-1) and (4152.9 kg ha-1, and economic benefit of 5.99 (ETB) and 3.65 (ETB) respectively. Among malt barley varieties highest (4110.4) and (3538.3) kg ha-1 grain yield was recorded from EH1847 and Bekoji 1 verities respectively. The production of malt barley with higher yield, optimal kernel protein concentration and higher economic benefit was obtained via EH1847 malt barley varieties along with 150% RNP and 200% kg ha-1 fertilizer rate in the study area and similar agro ecologies.
    
    VL  - 8
    IS  - 1
    ER  - 

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Author Information
  • Kulumsa Agricultural Research Center, Ethiopian Institute of Agricultural Research, Kulumsa, Ethiopia

  • Kulumsa Agricultural Research Center, Ethiopian Institute of Agricultural Research, Kulumsa, Ethiopia

  • Kulumsa Agricultural Research Center, Ethiopian Institute of Agricultural Research, Kulumsa, Ethiopia

  • Kulumsa Agricultural Research Center, Ethiopian Institute of Agricultural Research, Kulumsa, Ethiopia

  • Kulumsa Agricultural Research Center, Ethiopian Institute of Agricultural Research, Kulumsa, Ethiopia

  • Kulumsa Agricultural Research Center, Ethiopian Institute of Agricultural Research, Kulumsa, Ethiopia

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