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Effect of Spacing on Yield Components and Yield of Chickpea (Cicer arietinumL. ) at Assosa, Western Ethiopia

Received: 6 December 2017    Accepted: 26 April 2018    Published: 15 May 2018
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Abstract

A field experiment was conducted in Assosa District of western Ethiopia during 2013 cropping season to determine the effect of different inter row (20, 30, 40, 50cm) and intra row spacing (5, 10, 15cm) on growth parameters, yield components and yield of Desi chickpea. The experimental design was randomized complete block design in factorial arrangement with three replications. There was highly significant (P<0.01) effect of both inter row and intra row spacing on days to 50% flowering, days to 90% maturity, number of seeds per pod, hundred seed weight. The 50cm inter row spacing gave the highest number of seeds per pod (1.23) and hundred seed weight (25.38 g). Number of seeds per pod and hundred seed weight were significantly increased as the intra row spacing increased. The interaction effect of inter row and intra row spacing was significant on plant height, number of primary branches, number of pods per plant, above ground dry biomass, grain yield and harvest index. For all of the inter row spacing, the number of primary branches was increased as the intra row spacing increased. There was a progressive increase of number of pods per plant as the inter- and intra-row spacing increased while the highest above ground dry biomass (10650.27 kg ha-1) was recorded at 20×5cm spacing. For all of the inter row spacing, the harvest index was increased as the intra row spacing increased. The 30cm inter- by 10cm intra- row spacing gave the highest grain yield (1219 kg ha-1) while the lowest grain yield (733 kg ha-1) was recorded from 50cm × 15cm spacing which was statistically similar to the yield obtained from 40cm × 15cm spacing. From this study it can be concluded that even if 20cm×15cm, 30cm×15cm, 30cm×10cm and 40cm×5cm spacing combinations showed statistical parity, 30cm×10cm or 30cm×15cm spacing can tentatively be recommended.

Published in Agriculture, Forestry and Fisheries (Volume 7, Issue 2)
DOI 10.11648/j.aff.20180702.11
Page(s) 39-51
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

‘Desi’ Type Chickpea, Inter-row Spacing, Intra-row Spacing

References
[1] Abdel, L. Y. I. 2008. Effect of seed size and plant spacing on yield and yield components of faba bean (Viciafaba L.). Research Journal of Agriculture Biological Science, 4(2): 146-148.
[2] Abo El-Zahab, A. A., A. A. Al-Babawy and I. S. Nidway. 1981. Density studies on faba beans (Viciafaba L.) II: Growth parameters. Agronomy and Crop Science Journal, 150: 303-312.
[3] Adamu, M. 1995. Effects of sowing date, weeding frequency and seed rate on yield of faba bean grown on pellicvertisol at Sheno. Proceeding; Conference of Agronomy and Crop Physiology SCiety of Ethiopia, Addis Ababa. pp. 120-126.
[4] Al-Aduselam, M. A. and K. S. Abdai. 1995. Effect of plant density and certain pesticides on growth, yield and rhizobial nodulation of faba bean. King Saudi University, Agricultural Science Journal, 7: 249-257.
[5] Alihan Cokkizgin, 2012. Botanical characteristics of chickpea genotypes (Cicer arietinum L.) under different plant densities in organic farming. Scientific Research and Essays, 7(4): 498-503.
[6] Amare, G; Mekonnen, W. M. and T. Asfwa. 1993. Effect of method and rate of seeding on faba bean yield. pp. 18-19 In: Nile Valley Regional Program on Cool Season Food Legumes. Annual Report 1991/92, Ethiopia. ICARDA/NVRP-024.
[7] Amato, G., R. Cibella, D. Giambalvo and Gristina, L. 1992. Observations of the reproductive development in faba bean (Viciafaba L. var. equina) in relation to plant density pp. 245–246. In: PrCeedings of the 1st European Conference on Grain Legumes 1–3 June, Angers, France.
[8] Andrade FH., Calviño P., Cirilo A. and Barbieri P. 2002. Yield responses to narrow rows depend on increased radiation interception. Agronomy Jounal. 94: 975-980.
[9] Asossa Agricultural Research Center (AARC). 2007. Farming system survey document. (unpublished report), Asossa, Benishangul-Gumuz Regional State, Ethiopia.
[10] Ayaz, S., D. L. McNeil, B. A. McKenzie and G. D. Hill. 2001. Density and sowing depth effects on yield components of grain legumes. Proceedings of Agronomic Society. New Zealand, 29: 9-15.
[11] Aydogdu, L. and Acikgoz, E. 1995. Effect of seeding rate on seed and hay yield in common vetch (Vicia sativa L.). Agronomy and Crop Science Journal, 174: 181-187.
[12] Bakry BA, Elewa TA, El-Karamany MF, Zeidan MS, Tawfik MM. 2011. Effect of row spacing on yield and its components of some faba bean varieties under newly reclaimed sandy soil condition. World Journal of Agricultural Science, 7(1): 68-72.
[13] Ball, R. A., L. C. Purcell and E. D. Vories. 2000. Short-season soybean yield compensation in response to population and water regime. Crop Science, 40: 1070-1078
[14] Beech, D. F. and G. L. Leach. 1989. Effect of plant density and row spacing on the yield of chickpea (cv. Tyson) grown on the Darling Down, South-eastern Queens land. Australia Journal of Experimental Agriculture 29(2):241-246.
[15] Bekele Shiferaw, Johns R., Silim S., Hailemariam Teklewold and Gwata E., 2007. Analysis of production costs market opportunities and competitiveness of Desie and Kabuli chickpea in Ethiopia. IPMS (improving productivity and market success) of Ethiopian farmers project working paper 3. ILRI, Nairobi, Kenya. pp 48.
[16] Bekele Shiferaw, Bantilan C, Gupta SC and Shetty SVR. 2004. Research spillover benefits and experiences in inter-regional technology transfer: Assessment and synthesis of some findings. Research Report. ICRISAT (International Crops Research Institute for the Semi-Arid Tropics), Patancheru, India. pp 131.
[17] Bennet, J. P.; Adams, M. W. and C. Burga. 1977. Pod yield component variation and inter correlation in Phaseolus vulgaris L. as affected by planting density. Crop Science, 17:73-75.
[18] Biabani, A. 2011. Effect of Plant Density on Yield and Yield Components of Chickpea (CicerarietinumL.)Grown under Environmental Condition of Golestan, Iran. Journal of Agricultural Science and Technology, 5:32-33
[19] Caliskan S., Aslan M., Uremis I. and Caliskan ME. 2007. The effect of row spacing on yield and yield components of full season and double cropped soybean. Turky Journal of Agriculture and Forestry. 31: 147-154.
[20] Chavan, J. K., Kadam, S. S. and Salunke, D. K. 1986. Biochemistry and technology of chickpea (Cicerarietinum) seeds. CRC Crit. Rev. Food Sci. Nutr., 25: 107-132.
[21] Christodoulou, V, Bampidis, V. A., Hucko, B., Ploumi, K., Iliadis, C., Robinson, P. H. and Mudrik, Z. 2005. Nutritional value of chickpeas in rations of lactating ewes and growing lambs. Animal Feed Science and Technology, 118: 229-241.
[22] CSA (Central Statistical Authority). 2013. Crop Production Sample Survey Report on the area and production forecast for major crops (private peasant holdings ‘Meher’ season). The FDRE Statistical Bulletin. Addis Ababa, Ethiopia 5: 10-14.
[23] CSA (Central Statistical Authority). 2000. Time series data on production and yield of major crops. Statistical Bulletin. Addis Ababa. 56: 1-3.
[24] CSA (Central Statistical Agency). 2006. Federal Democratic Republic of Ethiopia. Statistical Abstract. 2005. CSA, Addis Ababa, Ethiopia.
[25] Davis, P. H. 1970. Flora of Turkey and the East Aegean Islands. Edinburgh University Press, pp. 267-274.
[26] Day, P. R. 1965. Hydrometer Methods of Particle Size analysis. In: C. A. Black (ed.), Agronomy No. 9. Part 1. American society of agronomy. Madison, Wisconsin, USA.
[27] Dewis, J. and P. freitas. 1975. Physical and chemical methods of soil and tissue analysis. FAO Bulletin No. 10. Rome. Pp275.
[28] Donald, C. M. 1963. Competition among crop and pasture plants. Advanced Agronomy, 15: 1-118.
[29] EARO (Ethiopian Agricultural Research Organization). 2004. Directory of Released Crop Varieties and their Recommended Cultural Practices, Addis Ababa, Ethiopia.
[30] Egli, D. B. 1988. Plant density and soybean yield. Crop Science, 28: 977-980.
[31] FAOSTAT, 2012. Statistical databases and data‐sets of the Food and Agriculture Organization of the United Nations. http://faostat.fao.org/default.aspx, Accessed on September, 2012
[32] Farag, S. A. and H. A. El-Shamm. 1994. Effect of irrigation intervals and plant distances on the growth and seed yield of broad bean plants. Annual Agricultural Science, Moshtohor, 32(4): 2071-2081.
[33] FDRE (Federal Democratic Republic of Ethiopia). 2010. Extension Package for Pulse Production and Improved Management Practices. Agricultural Extension Directorate. Amharic version. Addis Ababa, Ethiopia.
[34] Felton W. L., Marcellos H. and Murison R. D. 1996. The effect of row spacing and seeding rate on chickpea yield in Northern New South Wales. Proceeding 8th Australia Agronomy Conference Toowoomba, pp. 251-253.
[35] Gebre Hadgu. 2006. Effect of planting method and spacing on yield and yield attributes of sesame (Sesamonindicum L) in the low land plain of Humera, western Tigray, Ethiopia. M. Sc. Thesis Presented to Haramaya University. Haramaya, Ethiopia.
[36] Geletu Bejiga. 1994. Forty years of Research Experience. DebreZeit Agricultural Research Center (1955-1994). DebreZeit, Ethiopia.
[37] GeletuBejiga. 1972. Chickpea Production in Ethiopia. In: PrCeedings of the International Workshop on Chickpea Improvement, (Green, J. M., Nene, Y. L and Smithson, J. B. eds), pp. 236-242, ICRISAT (International Crops Research Institute for the Semi-Arid Tropics), Andhra Pradesh, India.
[38] GeletuBejiga and AbebeTullu. 1982. The influence of planting dates on the yield of three chickpea (CicerarietinumL) varieties. Ethiopian Journal of Agricultural Science, 14: 61- 66.
[39] [39] GeletuBejiga, Million Eshete and YadetaAnbessa. 1996. Improved cultivars and production technology of chickpea in Ethiopia. DebreZeit Agricultural Research Center (DZARC), DebreZeit, Ethiopia.
[40] Gomez, K. A. and A. A. Gomez. 1984. Statistical prCedures for agricultural research, 2nd ed. John Willy and Sons, Newyork. p 680.
[41] Grafton, K. F, A. A Schneiter and B. J. Nagle. 1988. Row spacing, plant population and genotype and row spacing interaction effects on yield and yield components of dry bean. Agronomy Journal, 80: 631-634.
[42] Hodgson, G. L. and G. E. Blackman. 2005. An Analysis of the Influence of Plant Density on the Growth of Viciafaba. L. Journal of Experimental Botany. Oxford University. 7:147-165.
[43] Holshouser, D. L and P. W. Joshua. 2002. Plant population and row spacing effects on early soybean production systems in Mid Atlantic, USA Agronomy Journal, 94: 603-611.
[44] ICRISAT (International Crops Research Institute for the Semi-Arid Tropics). 2010. Chickpea Seed Production Manual, patancheru 502 324 Andhra Pradesh, India.
[45] Jackson, M. L. 1958. Soil Chemical Analysis Practice Hall of India. New Delhi.
[46] James, N. and S. P. Singh. 1985. Effects of lCation and plant density on yield and architectural traits in dry beans. Journal of Crop Science, 23: 579-584.
[47] Johnson, R. R.; Green, D. E. and C. W. Jordan. 1982. What is the best soybean row width: A U.S. Perspective. Crops and Soils. 34 (4): 10-13.
[48] Joshi PK, ParthasaratyRao P, Gowda CLL, Jones RB, Silim SN, Saxena KB and Kumar J. 2001. The world chickpea and pigeonpea economies: Facts, trends, and outlook. ICRISAT (International Crops Research Institute for the Semi-Arid Tropics), Patancheru, India. p 62.
[49] Kay, D. E. 1979. Crop and Product Digest–Food Legumes. No. 3, London: Tropical Products Institute, pp. 50-51.
[50] Khan, E. A., M. Aslam, H. K. Ahmad, M. Ayaz and A. Hussain. 2010. Effect of row spacing and seeding rates on growth yield and yield components of chickpea. Sarhad Journal ofAgriculture, 26(2): 201-211
[51] Ladizinisky, G. 1975. A new Cicer from Turkey notes from the Royal Botanical Garden Edinburgh. Indian Journal of Experimental Biology.34: 201- 202.
[52] Landon, J. R. 1984. Booker tropical soil manual (ed.). A hand book for soil survey and agricultural land evaluation in the tropics and subtropics. Booker Agriculture International Limited, Bath.
[53] LegesseDadi, SenaitRegassa, AsnakeFikre and DemissieMitiku. 2005. Adoption of chickpea varieties in the central highlands of Ethiopia. Research Report 62. EARO (Ethiopian Agricultural Research Organization), Addis Ababa, Ethiopia.
[54] Lemlem H/Giorgis. 2011. Effect of N fertilizer and plant density on yield, seed quality, and oil content of soybean (Glycine max L. Merr) at Hawassa, southern Ethiopia. M. Sc. Thesis Presented to Haramaya University, Ethiopia.
[55] Lopez-Bellido, R. J., L. Lopez-Bellido, F. J. Lopez-Bellido and J. E. Castillo. 2003. Faba bean (Viciafaba L.) response to tillage and soil residual nitrogen in a continuous rotation with wheat (Triticumaestivum L.) under rain fed Mediterranean conditions. Agronomy Journal, 95: 1253-126.
[56] Loss, S., M. K. L. Siddique and A. Crombie. 1998. Response of faba bean (ViciafabaL.) to sowing rate in southwestern Australia, II: Canopy development, radiation absorption and dry matter partitioning. Australian Agriculture Research Journal, 49(6): 999-1008.
[57] Machado, S., Humphreys, C., Tuck, B., and Corp, M. 2006. Seeding date, plant density, and cultivar effects on chickpea yield and seed size in eastern Oregon. Online. Crop Management doi: 10.1094/CM-2006-0621-01-RS.
[58] Martin, J. H., W. H., Leonardo and O. L. Stamp. 1976. Principles of crop production. 3rded. Macmillan publishing Co., Inc. New York.
[59] Matthews, P. W., E. L. Armstrong, C. J. Lisle, I. D. Menz, P. L. Shephard and B. C. Armstrong. 2008. The effect of faba bean plant population on yield, seed quality and plant architecture under irrigation in southern NSW. AustralianCrop Agronomy Journal, 40:23-25.
[60] Mehmet, O. Z., 2008. Nitrogen rate and plant population effects on yield and yield components in soybean. African Biotechnology Journal, 7(24): 4464-4470.
[61] Mekonnen, D. 1999. Effects of spacing and nitrogen fertilization on yield and related traits of finger millet [Eleusinecoracana (L.)Gaerth] growth on soils of Bako area, Western Ethiopia. M. Sc. Thesis, Alemaya University, Ethiopia.
[62] MenaleKassie, BekeleShiferaw, Solomon Asfaw, Tsedeke Abate, Geoffrey Muricho, SetotawFerede, Million Eshete, and KebebewAssefa. 2009. Current Situation and Future outlooks of the Chickpea Sub sector in Ethiopia. International Crops Research Institute for the Semi Arid Tropics (ICRISAT), Nairobi, and Ethiopian Institute of Agricultural Research (EIAR), DeberZeitAgricultral Research Centre, DebreZeit, Ethiopia. pp 1- 43.
[63] Metson A. J. 1961. Method of chemical analysis for soil survey samples. New Zealand DSIR Soil Bur Bull 12. Govt. printer, Wellington, New Zealand
[64] Miller W. R. and Roy L. Donahue. 1997. Soils in our environment. 7th ed. Prentice-Hall of India, New Delhi.
[65] Million Eshete.1994. Chickpea and Lentil Agronomy Research. In Cool season food and forage legumes of Ethiopia: PrCeedings of the National Cool-season Food and Forage Legumes Review Conference, 16–20 December 1993, Addis Ababa, Ethiopia (Tilaye A, Bejiga G, Saxena MC and SolhMd B, eds.). Aleppo, Syria: ICARDA; and Addis Ababa, Ethiopia: Ethiopian Agricultural Research Organization.
[66] Million Eshete. 1995. Chickpea (Cicerarietinum) and lentil (Lens culinaris) agronomy research. First National Cool-season Food Legumes Review Conference. Addis Ababa, Ethiopia, 16-20 Dec 1993, published in ICARDA, Aleppo (Syria).
[67] MoARD (Ministry of Agriculture and Rural Development). 2010. Crop Variety Register Issue No. 13, Animal and Plant Health regulatory directorate, Addis Ababa, Ethiopia.
[68] MoARD (Ministry of Agriculture and Rural Development). 2003. Plan for improving the productivity and marketing of chickpeas (Amharic). MoARD, Extension Department, Addis Ababa, Ethiopia. (mimeo). 52 pp.
[69] Oad, F. C., M. A. Samo, S. M. Qayylan and N. L. Oad. 2002. Inter and intra row spacing effect on the growth, seed yield and oil continent of safflower. Asian Plant ScienceJournal, 1: 18-19.
[70] Olsen, S. R., and L. A. Dean. 1965. Phosphorus. In: Methods of Soil Analysis. American SCiety of Agronomy, 9: 920-926.
[71] Onwueme I. C., and T. D., Sinha. 1991. Field crop production in Tropical Africa, Principles and practice, CTA (Technical center for agriculture and rural cooperation) The Netherlands.
[72] Ouattara, S. and D. B. Weaver. 1994. Effect of growth habit on yield and agronomic characteristics of late-planted soybean. Crop Science, 34: 870- 873.
[73] Page, A. L. 1982. Methods of soil analysis. Part II. Chemical and Microbiological Properties. Madison. USA.
[74] Panwar, K. S., A. S. Faroda, D. S. Malik, L. P. S. Ahhawat, K. K. Dhingra, M. R. Rao, R. C. Singh, D. R. Dahiya, Singh, Atar and R. P. Roy Sharma, 1980. Response of chickpea varieties to seed rates and row spacings. Silver Jubilee SCiety of Agronomy. 9:54-55
[75] Parihar, S. S. 1996. The effect of row and plant spacings on the growth and yield of chickpea. Indian Journal of Agronomy 41(4):604-607.
[76] Parvez, A. Q. Gardner, F. P. and K. J. Boote. 1989. Determinate and indeterminate type soybean cultivar responses to pattern, density and planting date. Crop Science, 29:150-157
[77] Pilbeam, C. J., P. D. Hebblethwaite, H. E. Ricketts and T. E. Nyongesa. 1991. Effects of plant population density on determinate and indeterminate forms of winter faba beans (Viciafaba L.), I: yield and yield components, Agriculture ScienceJournal, 116: 375-383.
[78] Pundir, R. P. S. and H. M. Mengesha, 1983. Collection of chickpea in Ethiopia. Inter. Chickpea Newsletter, 8: 6-7.
[79] Rajesh, K., Yadav, B. D., John, R. K. and R. Kumar. 1997. The effect of inter and intra-row spacings and variety on the seed yield of cowpea. Tropical Agriculture, 15: 233-236.
[80] Ranist, V. E., M. Verloo, A. Demyer and J. M. Pawels, 1999. Manual for soil chemistry and fertility laboratory. Belgium, p 245.
[81] Rechinger, K. H. 1952. Arkiv for Botanik, StCkholm, AndraSerie 1: 510.
[82] RezeneFessehaie. 1994. Weed research in cool-season food legumes. In: PrCeedings of the First National Cool Food Season Legumes Review Conference, 16-20 December. 1993. Addis Ababa, Ethiopia. ICARDA/ Institute of Agricultural Research. ICARDA:Aleppo, Syria. pp: 252-278.
[83] Saxena, M. C. and K. B. Singh. 1987. The chickpea. CAB International, The international Center for Agricultural Research in the Dry Areas. Aleppo Syria.
[84] Shahein, A. H, E. M. R Agwah and H. A. El-Shamma. 1995. Effect of plan density as well as nitrogen and phosphorus fertilizer rate on growth green pods and dry seed yield and quantity of broad bean. Moshtohor Annual Agricultural Science, 33(1): 371-88.
[85] Shamsi, K. and S. Kobraee. 2009. Effect of plant density on the growth, yield and yield components of three soybean varieties under climatic conditions of Kermanshah, Iran. Animal and Plant Sciences Journal, 2(2): 96 - 99.
[86] Shamsi, K. 2005. Effect of sowing date and row spacing on yield and yield components of chickpea under rain fed conditions in Iran. Islamic Azad University, Kermanshah Branch, Iran. Published at www.biosciences.elewa.org.Accessed on May 8, 2012
[87] Sharar MS, Ayub M, Nadeem MA, Noori SA. 2001. Effect of different row spacings and seeding densities on the growth and yield of gram (CicerarietinumL.). Department of Agronomy, University of Agriculture, Faisalabad, Pakistan. Pakistan Journal of Agricultural Science, 38: 51-53.
[88] Singh N. P, and R. A. Singh. 2002. Scientific crop production, X press Graphics, Delhi-28, 1sted., India
[89] Solomon Abate. 2003. Effects of irrigation frequency and plant population density on growth, yield components and yield of haricot bean (Phaseolus vulgaris L.) in Dire Dawa Area. M. Sc. Thesis Presented to Haramaya University, Ethiopia.
[90] Tanner, J. W.; and D. J. Hume. 1978. Management and Production. In: A. G. Norman (ed.)Soybean Physiology Agronomy and Utilization. Academic Press, New York. pp. 157-217.
[91] Togay N, Togay Y, Erman M, Yusuf D, Cig F. 2005. The effects of different plant densities on yield and yield components in some chickpea (CicerarietinumL.) cultivars in dry and irrigated conditions. Journal of Agricultural Science, 11(4): 417-421.
[92] Trang, K. M. and J. Giddens. 1980. Shading and temperature as environmental factors affecting growth, nodulation and symbiotic nitrogen fixation by Soybeans. Agronomy Journal, 72: 305-308.
[93] Tuba Biçer, B. 2008. The effect of seed size on yield and yield components of chickpea and lentil. African Journal of biotechnology, 8: 1482-1487.
[94] Turk, M. A, A. M. Tawaha and M. K. J. El-shatnawi. 2003. Response of lentil (Lens CulinarisMedk) to plant density, sowing date, phosphorus fertilization and ethephon application in the absence of moisture stress. Agriculture Crop Science Journal, 189: 1-6.
[95] Turk, M. A. and A. M. Tawaha. 2002. Impact of seeding rate, seeding date, rate and method of phosphorus application in faba bean (Viciafaba L. minor) in the absence of moisture stress. Biotechnology and Agronomy SCiety Environment, 6 (3): 171-178.
[96] Van der Maesen, L. J. G. 1972. CicerL. A monograph of the genus with special reference to a chickpea (CicerarietinumL.), its ecology and cultivation. Communication of the Agricultural Universitry, Wageningen 72: 10.
[97] Willey, R. W. 1982. Plant population and crop yield. In: MiloslavRechigl, Jr. (Ed.) Hand Book of Agricultural Productivity. CRC Press, Inc. BCa Raton, Florida. pp. 201-207.
[98] Wilson, V. E. and I. D. Teare. 1972. Effects of spacing on lentil yield. Crop Science, 12: 507-510.
[99] Yousaf Ali, M. AhsanulHaq, G. R. Tahir, N. Ahimed. 1999. Effect of Intra and inter row spacing on the Yield and Yield components of chickpea. Pakistan Journal of Biological Science, 2(2):305-307.
[100] M. Shiferaw, T. Tamado and F. Asnake. 2018. Effect of Plant Density on Yield Components and Yield of Kabuli Chickpea (Cicerarietinum L.) Varieties at DebreZeit, Central Ethiopia. International Journal of Plant & Soil Science 21(6).
[101] R. P. Soratto, T. A. Catuchi, E. D. De Souza, J. L. Garcia. 2017. Plant Density and Nitrogen Fertilization on Common Bean Nutrition and Yield. Rev. Caatinga, Mossoró, V. 30, N. 3, P. 670 – 678.
[102] M. Tuarira and M. Moses. 2014. Effects of Plant Density and Planting Arrangement in Green Bean Seed Production. Journal of Global Innovative Agriculture and SC. Sciences 2(4): 152-157.
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    Melak Agajie. (2018). Effect of Spacing on Yield Components and Yield of Chickpea (Cicer arietinumL. ) at Assosa, Western Ethiopia. Agriculture, Forestry and Fisheries, 7(2), 39-51. https://doi.org/10.11648/j.aff.20180702.11

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    Melak Agajie. Effect of Spacing on Yield Components and Yield of Chickpea (Cicer arietinumL. ) at Assosa, Western Ethiopia. Agric. For. Fish. 2018, 7(2), 39-51. doi: 10.11648/j.aff.20180702.11

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    Melak Agajie. Effect of Spacing on Yield Components and Yield of Chickpea (Cicer arietinumL. ) at Assosa, Western Ethiopia. Agric For Fish. 2018;7(2):39-51. doi: 10.11648/j.aff.20180702.11

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  • @article{10.11648/j.aff.20180702.11,
      author = {Melak Agajie},
      title = {Effect of Spacing on Yield Components and Yield of Chickpea (Cicer arietinumL. ) at Assosa, Western Ethiopia},
      journal = {Agriculture, Forestry and Fisheries},
      volume = {7},
      number = {2},
      pages = {39-51},
      doi = {10.11648/j.aff.20180702.11},
      url = {https://doi.org/10.11648/j.aff.20180702.11},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.aff.20180702.11},
      abstract = {A field experiment was conducted in Assosa District of western Ethiopia during 2013 cropping season to determine the effect of different inter row (20, 30, 40, 50cm) and intra row spacing (5, 10, 15cm) on growth parameters, yield components and yield of Desi chickpea. The experimental design was randomized complete block design in factorial arrangement with three replications. There was highly significant (P-1) was recorded at 20×5cm spacing. For all of the inter row spacing, the harvest index was increased as the intra row spacing increased. The 30cm inter- by 10cm intra- row spacing gave the highest grain yield (1219 kg ha-1) while the lowest grain yield (733 kg ha-1) was recorded from 50cm × 15cm spacing which was statistically similar to the yield obtained from 40cm × 15cm spacing. From this study it can be concluded that even if 20cm×15cm, 30cm×15cm, 30cm×10cm and 40cm×5cm spacing combinations showed statistical parity, 30cm×10cm or 30cm×15cm spacing can tentatively be recommended.},
     year = {2018}
    }
    

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  • TY  - JOUR
    T1  - Effect of Spacing on Yield Components and Yield of Chickpea (Cicer arietinumL. ) at Assosa, Western Ethiopia
    AU  - Melak Agajie
    Y1  - 2018/05/15
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    N1  - https://doi.org/10.11648/j.aff.20180702.11
    DO  - 10.11648/j.aff.20180702.11
    T2  - Agriculture, Forestry and Fisheries
    JF  - Agriculture, Forestry and Fisheries
    JO  - Agriculture, Forestry and Fisheries
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    EP  - 51
    PB  - Science Publishing Group
    SN  - 2328-5648
    UR  - https://doi.org/10.11648/j.aff.20180702.11
    AB  - A field experiment was conducted in Assosa District of western Ethiopia during 2013 cropping season to determine the effect of different inter row (20, 30, 40, 50cm) and intra row spacing (5, 10, 15cm) on growth parameters, yield components and yield of Desi chickpea. The experimental design was randomized complete block design in factorial arrangement with three replications. There was highly significant (P-1) was recorded at 20×5cm spacing. For all of the inter row spacing, the harvest index was increased as the intra row spacing increased. The 30cm inter- by 10cm intra- row spacing gave the highest grain yield (1219 kg ha-1) while the lowest grain yield (733 kg ha-1) was recorded from 50cm × 15cm spacing which was statistically similar to the yield obtained from 40cm × 15cm spacing. From this study it can be concluded that even if 20cm×15cm, 30cm×15cm, 30cm×10cm and 40cm×5cm spacing combinations showed statistical parity, 30cm×10cm or 30cm×15cm spacing can tentatively be recommended.
    VL  - 7
    IS  - 2
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  • Ethiopian Biodiversity Institute (EBI) Assosa Biodiversity Center, Assosa, Ethiopia

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