AMALGAMATED N P S FERTILIZER ON CROP PERFORMANCE AND NODULATION OF SOYBEAN VARIETIES ON ACIDIC SOIL.

Authors

  • Tesfa Imenu
  • Tolera Abera
  • Kinde Lamessa

DOI:

https://doi.org/10.36103/ijas.v54i2.1714

Keywords:

Amalgamated NPS, Katta and Korme,soybean, nodule, seeds yield

Abstract

This experiment was aimed to evaluate the effect of amalgamated NPS chemical fertilizer on crop performance and nodulation of soybean (Glycine max L (Merrill)) varieties on acidic soil during 2020 cropping season. Varieties of soybean i.e “Katta” and “Korme” and six levels of amalgamated NPS chemical fertilizer were used in factorial arrangement within randomized complete block design with three replications. Nodule parameters were highly influenced (P<.001) by the main effect of amalgamated NPS chemical fertilizer levels. The highest grain yield (2390 kg ha-1) was obtained from application of 19(N) 38(P2O) 7(S), kg ha-1 .. “Katta”and “Korme” varieties of soybean were high yielder at level of 19(N) 38(P2O) 7(S), kg ha-1 combined NPS fertilizer application. Therefore, both varieties “Katta” and “Korme” with application of 19(N) 38(P2O) 7(S), kg ha-1 mixed chemical fertilizer were recommended for enhancing nodule development and seeds yield.

References

-Akter, F., Nuru Islam, M.D., Shamsuddoha, A. T. M., Bhuiyan, M. S. I., and S, Shilpi 2013. Effect of phosphorus and sulphur on growth and yield of soybean (Glycine max l.). department of soil science, sher-e-bangla agricultural university, dhaka (1207), bangladesh, International Journal of Bio-resource and Stress Management 2013, 4(4):556-561.

- Al-Abodi, H. M. K., A.Y. Naseralla, and I. H. H. Al-Hilfy. 2016. Response of some genotypes of soybean to ascorbic acid spraying. Iraqi Journal of Agricultural Science,47(5):1188-1195. https://doi.org/10.36103/ijas.v47i5.495

- Al-Rukabi, M. N., and K. D. H. Al-Jebory. 2017. Response of green bean to nitrogen fixing bacterial inoculation and molybdenum. Iraqi Journal of Agricultural Science,48(2):413-421. https://doi.org/10.36103/ijas.v48i2.403

- Al-Rukabi, M. N., and K. D. H. Al-Jebory. 2017. Effect of bio-fertilizers and molybdenum on growth and yield of green bean. Iraqi Journal of Agricultural Science,48(3):681-689. https://doi.org/10.36103/ijas.v48i3.380

-BARC (Bako Agricultural Research Center). 2020. Mean monthly annual total rainfall and minimum and maximum temperature of 2019/ 2020 cropping season report.

-Begum.M.A, ,M.A. Islam, Q.M, Ahmed, M.A. Islam and M.M. Rahman . 2015. Effect of nitrogen and phosphorus on the growth and yield performance of soybean. Rلأes. Agric. Livest. Fish. 2 (1): 35-42

-Bekere, W., Endalkachew, W.M and T, Kebede. 2012. Growth and nodulation response of soybean (Glycin emax L) to Bradyrhizobium inoculation and phosphorus levels under controlled condition in South WesternEthiopia. Jima Agricultural Research Center, Jima, Ethiopia, pp 4266-4270

-CSA (The Federal Democratic Republic of Ethiopia Central statistical Agency). 2018. Agricultural Sample Survey 2017/2018: Report on Area and Production of Major Crops (Private Peasant Holdings, Maher Season). Volume-I, Statistical Bulletin 586, Addis Ababa, Ethiopia

-Dame, O and T, Temesgen. 2019. Responses of soybean (Glycine max L.)Varieties to NPS Fertilizer Rates at Bako, Western Ethiopia. American Journal of Water Science and Engineering 2019; 5(4): 155-161

-Deresa, S. 2018. Response of common bean (Phaseolus vulgaris L.) varieties to rates of blended NPS fertilizer in Adola district, Southern Ethiopia. Bore Agricultural Research Center, Ethiopia. Pp:164-179. DOI: 10.5897/AJPS2018.1671

-EthioSIS (Ethiopia Soil Information System). 2014. Soil fertility status and fertilizer recommendation atlas for Tigray regional state, Ethiopia. Ethiopia. Ethiopia soil information system, Ethiopia.

-Gabisa, M., Ejara, E., and M, Zinash. 2017. Effect of phosphorus application and plant density on yield and yield components of Haricot bean (Phaseolus vulgaris L.) at Yabello Southern Ethiopia, International Journal of Scientific Engineering and Applied Science (IJSEAS) – Volume-3, ISSN: 2395-3470

-Habtamu, D., Taye, K and A, Nebiyu 2018. Response of soybean (Glycine max L) Merrill) to Plant population and NP fertilizer in Kersa Woreda of Jimma Zone, South Western Ethiopia. International Journal of Current Research and Academic Review. 6(9), 50-71.

- Khattab, E. A., R. E. Essa, and M.A. Ahmed. 2017. Drought tolerance of some soybean varieties in newly land. Iraqi Journal of Agricultural Science,50(3):741-752. https://doi.org/10.36103/ijas.v50i3.690

-Landon, J.R. 1991. Booker tropical soil manual: a handbook for soil survey and agricultural land evaluation in the tropics and sub-tropics. Longman Scientific and Technical, Longman Group, New York, USA, pp. 1-474

-Majumdar, B., M.S. Venkatesh, B. Lal, and K. Kumar, . 2001. Response of soybean (Glycine max) to phosphorus and Sulphur in acid alfisol of Meghalaya. Indian Journal of Agronomy 46(3), 500-505

-Miruts, F. 2016. Analysis of the Factors Affecting Adoption of Soybean Production Technology in Pawe District, Metekele Zone of Benshangul Gumuz Regional State, Ethiopia. Pp: 122-137

-Nasreen, S. and A.T.M. Farid, . 2006. Sulphur uptake and yield of soybean as influenced by sulphur fertilization. Pakistan J Agric Res 19: 59-64

-Nebret, T. 2012. Effect of nitrogen and Sulphur application on yield components and yield of common bean (Phaseolus vulgaris L.) In Eastern Ethiopia. M.Sc. Thesis. Haramaya University of Agriculture, Haramaya. P. 23-25

-Shengu, M.K and A.Y. Alemayehu 2017..Response of Soybean to sowing depth and phosphorus fertilizer rate in Dilla, Humid tropics of Ethiopia. International Journal of Scientific and Research Publications, ISSN 2250-3153

-Shumi, D., Alemayehu, D., Afeta, T and D, Belachew .2018. Effect of phosphorus rates in blended fertilizer (NPS) and row spacing on production of bushy type Common bean (Phaseolus vulgaris L.) at mid-land of Guji, Southern Ethiopia. Bore Agricultural Research Center, Ethiopia. Journal of Plant Biology Soil Health 5(1): 7.

-Scherer, H. W. 2001. Sulphur in crop production. European Journal Agronomy14 (2): 81-111. DOI: 10.1016/S1161-0301(00)00082-4

-Tahir, M.M., M.K. Abbasi, N.. Rahim, A., Khaliq, . and M.H. Kazmi, . 2009. Effect of Rhizobium inoculation and NP fertilization on growth, yield and nodulation of soybean (Glycine max L.) in the sub-humid hilly region of Rawalakot Azad Jammu and Kashmir, Pakistan. African Journal of Biotechnology, 8: 6191-6200

-Tamiru, S., Lalit, M.P and T, Angaw. 2012. Effects of inoculation by brady rhizobium japonicum strains on nodulation, nitrogen fixation, and yield of soybean (Glycine max (l.) Merill) varieties on Nitisols of Bako, Western Ethiopia. 8p, DOI: 10.5402/2012/261475

-Tarekegn, M. A and K, Kibret.2017 .Effects of rhizobium, nitrogen and phosphorus fertilizers on growth, nodulation, yield and yield attributes of Soybean at Pawe Northwestern Ethiopia 67(2) 201-218

-Tesfaye, A., Githiri, M., Derera, J. and D, Tolessa. 2011. Subsistence farmers’ experience and perception about the soil and fertilizer use in Western Ethiopia. Ethiopian Journal of Applied Sciences and Technology 2: 61-74

-Yadav, B. K. 2011. Interaction effect of phosphorus and Sulphur on yield and quality of cluster bean in TypicHaplustept. World Journal of Agricultural Sciences 7(5):556-560

-Yahiya, M., Samiullah and A. Futma, . 1995. Influence of phosphorus on nitrogen fixation in chickpea cultivars. Journal of Plant Nutrition, 18: 719–727

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Published

2023-04-28

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How to Cite

Tesfa Imenu, Tolera Abera, & Kinde Lamessa. (2023). AMALGAMATED N P S FERTILIZER ON CROP PERFORMANCE AND NODULATION OF SOYBEAN VARIETIES ON ACIDIC SOIL. IRAQI JOURNAL OF AGRICULTURAL SCIENCES, 54(2), 399-412. https://doi.org/10.36103/ijas.v54i2.1714

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