CHARACTERIZATION OF INDIGENOUS SHEEP HUSBANDRY PRACTICES IN WESTERN ZONE OF TIGRAY REGION, ETHIOPIA

Authors

  • Teweldemedhn MEKONNEN Tigray Agricultural Research Institute, Humera Begait Animals Research Centre, Tigray, Ethiopia
  • Shishay MARKOS Tigray Agricultural Research Institute, Humera Begait Animals Research Centre, Tigray, Ethiopia
  • Kibrom ESAK Tigray Agricultural Research Institute, Humera Begait Animals Research Centre, Tigray, Ethiopia
  • Tesfay ATAKLTI

DOI:

https://doi.org/10.36547/sjas.857

Keywords:

characterization, castration, husbandry, indigenous sheep, population dynamics, population trends, watering

Abstract

The survey was conducted before the ignition of the war in Tigray Regional State, Ethiopia (before October 2020). The objective of the survey was to characterize the husbandry practices of three indigenous sheep populations. A total of 253 households were randomly involved in the face-to-face interview. The Statistical Package for Social Sciences software was used for data analysis. Illiterates (34 %) and respondents, who attended lower primary school (44 %), were the major categories of the respondents. A mean (± SD) flock size of 7.91 ± 11.4 Tropical Livestock Unit (TLU) of indigenous sheep of the three genotypes were kept under extensive husbandry practices, however, the indigenous sheep population (55 %) trend was at a decreasing state in the last ten years. There was lower mean flock size in Arado (11.72 ± 8.0) than in Begait (85.07 ± 90.1) and Rutanna (223.08 ± 170.5) sheep. The decreasing state of communal grazing area (97 %) resulted in seasonal feed scarcity (96 %) in the last five years. Hence, feed supplementation was in 74 % of the respondents done in the dry season. Animals of most respondents (71 %) go to water source to drink water. It was noted that most animals drank water once a day (63 %) in the dry season. It was also noted that sheep fattening (4 %) was a neglected activity. There were sheep production challenges (100 %) and opportunities (72 %). Diseases (86 %) and external parasites (80 %) were major constraints in sheep production. However, lack of veterinary service (78 % no service) centre was a critical challenge. Practices of own ram-ewe mating (68 %), own flock born rams (51 %), uncontrolled mating (66 %), pure breeding (86 %) and use of rams outside of their flocks (79 %) were practiced in the indigenous sheep populations. Unknown ram-to-ewe ratio (26.9 %) and a ratio of one-ram-to-all-ewes in a flock (29.6 %) were practiced. Ram castration (35 %) was practiced to improve carcass quality (32 %). Feed development, shift to modern husbandry practices, access to veterinary services, indigenous sheep conservation through utilization, control of inbreeding, ram-to-ewe ratio, fattening and castration should be of future attention of farmers and stakeholders.

Author Biographies

Shishay MARKOS, Tigray Agricultural Research Institute, Humera Begait Animals Research Centre, Tigray, Ethiopia

Animal Genetics and Breeding 

Kibrom ESAK, Tigray Agricultural Research Institute, Humera Begait Animals Research Centre, Tigray, Ethiopia

Animal nutrition 

Tesfay ATAKLTI

Data collection 

References

Abdalla, M. B. M. A. (2018). Phenotypic Characteristics and Husbandry Practices of "Watish" Sheep in Singa Locality, Sinnar State, Sudan. (Unpublished MSc. Thesis). Sudan University of Science and Technology, Sudan.

Abebe, A. S., Alemayehu, K., Johansson, A. M. & Gizaw, S. (2020). Breeding practices and trait preferences of smallholder farmers for indigenous sheep in the northwest highlands of Ethiopia: Inputs to design a breeding program. PLoS ONE, 15(5), e0233040. https://doi.org/10.1371/journal. pone.0233040

Belete, S. G. (2009). Production and Marketing Systems of Small Ruminants in Goma District of Jimma Zone, Western Ethiopia. (Unpublished MSc. Thesis). Hawassa University, Awassa, Ethiopia.

CSA. (Central Statistical Agency). (2013). Ethiopian agricultural sample survey. Vol. II. Report on livestock and livestock characteristics. Statistical Bulletin 570, Addis Ababa, Ethiopia.

CSA. (Central Statistical Agency). (2017). Agricultural Sample Survey: Report on Livestock and Livestock Characteristics (Private Peasant Holdings), Vol. II. Statistical Bulletin 585, Addis Ababa, Ethiopia.

CSA. (Central Statistical Agency). (2018). Agricultural Sample Survey: Report on Livestock and Livestock Characteristics (Private Peasant Holdings). Vol. II. Statistical Bulletin 587, Addis Ababa, Ethiopia.

DAGRIS. (2006). Domestic Animal Genetic Resources Information System (DAGRIS). International Livestock Research Institute (ILRI), Addis Ababa, Ethiopia.

Esatu, B. & Chencha, C. (2022). Sheep breeding practices and reproductive performances in Arba Minch Zuria District of Gamo Zone, Southern Ethiopia. OMO International Journal of Sciences, 5(1), 56−73.

FAO. (Food and Agriculture Organization). (2012). Phenotypic characterization of animal genetic resources. FAO Animal Production and Health Guidelines, No. 11, Rome.

Fekerte, F. (2008). On-Farm Characterization of Blackhead Somali Sheep Breed and its Production System in Shinile and Erer Districts of Shinile Zone, Ethiopia. (Unpublished MSc. Thesis). Haramaya University, Ethiopia.

Gebretsadik, Z. T. & Anal, A. K. (2014). Indigenous sheep breeds of North Ethiopia: characterization of their phenotype and major production system. Tropical Animal Health and Production, 46, 341–347. DOI: 10.1007/s11250-013-0494-0

Gedefaw, M. & Gebremariam, B. (2019). Breeding Objectives and Practices of Small Holder Sheep Production in Habru Woreda North Wollo Zone of Amhara, Ethiopia. Journal of Scientific and Innovative Research, 8(2), 64−72.

Global Sheep Market (2017). http://www.thesheepsite.com/focus/5m/99/global-sheep-meat-market-thesheepsite.

Helen, N., Yoseph, M., Solomon, A., Kefelegn, K. & Sanjoy, K. P. (2015). Indigenous Sheep Production System in Eastern Ethiopia: Implications for Genetic Improvement and Sustainable Use. American Scientific Research Journal for Engineering, Technology, and Sciences (ASRJETS), 11(1), 136−152.

Hizkel, K. D. (2017). On-Farm Phenotypic Characterization and Consumer Preference Traits of Indigenous Sheep Type as an Input for Designing Community Based Breeding Program in Bensa District, Southern Ethiopia. (Unpublished MSc. Thesis). Haramaya University, Haramaya, Ethiopia.

ILRI. (International Livestock Research Institute). (2008). Policies for livestock development on the Ethiopian high lands. ILRI, Addis Ababa, Ethiopia 29.

Markos, T. (2006). Productivity and health of indigenous sheep breeds and crossbreds in the central Ethiopia highlands. (Unpublished PhD dissertation). Swedish University of Agricultural Science (SLU), Uppsala, Sweden, 74 p.

Mavule, B. S. (2012). Phenotypic characterization of Zulu sheep: Implications for conservation and improvement. (Unpublished MSc. Thesis). University of Zululand, South Africa.

Metsafe, M., Sandip, B. & Aynalem, H. (2017). Sheep Production and Breeding Practice in Adyio Kaka District of Kafa Zone, Southern Ethiopia. Journal of Biology, Agriculture and Healthcare, 7(3), 16−20.

Sisay, L. (2002). Phenotypic classification and description of indigenous sheep types in the Amhara National Regional State of Ethiopia. (Unpublished MSc. Thesis). University of Natal. Pietermaritzburg, South Africa, 104 p.

Solomon, A. & Gemeda, D. (2004). Status and strategies for genetic improvement programs on sheep in Ethiopia. In: Proceeding of the 11th Annual Conference of Ethiopian Society of Animal Production (ESAP). August 28−30, 2004. Addis Ababa, Ethiopia, 73−80.

Solomon, G. G. (2008). Sheep resources of Ethiopia: genetic diversity and breeding strategy. (Unpublished PhD Thesis). Wageningen University, The Netherlands, http://library.wur.nl/WebQuery.

Solomon, G., Azage, T., Berhanu, G. & Dirk, H. (2010a). Sheep and goat production and marketing systems in Ethiopia: Characteristics and strategies for improvement. IPMS (Improving Productivity and Market Success) of Ethiopian Farmers Project Working Paper 23, 58 p.

Solomon, G., Aynalem, H. & Tadelle, D. (2010b). Breeding objectives and breeding plans for Washera sheep under subsistence and market-oriented production systems. Ethiopian Journal of Animal Production, 10(1), 1−18.

SPSS. (Statistical Package for Social Sciences). (2019). Statistical Package for Social Sciences software, version 26.

Tesfay, B., Tsegay, G., Haftu, K., Teferi, A. & Bereket, H. (eds.) (2019). Participatory Agricultural Production Constraints Appraisal: Implication for Research and Development Interventions in Southern, North Western and Western Zones of Tigray. Tigray Agricultural Research Institute and Agricultural Growth Program-II, Proceedings of the Workshop held 09−15 November 2018, Wukro, Tigray, Ethiopia, Working Paper No. 1.

Thomas, D., Rangnekar, D., Owen, E., Smith, T., Steele, M. A., Anderson, S. & Herrero, M. (2004). Responding to the increasing global demand for animal products: implications for the livelihoods of livestock producers in developing countries. In: Responding to the livestock revolution. The role of globalization and implications for poverty alleviation. Edited by Owen, F., Smith, T., Steele, M. A., Anderson, S., Duncan, A. J., Herrero, M., Leaver, J. D., Reynolds, C. K., Richards, J. I. & Ku-Vera, J. C. Nottingham University Press, Nottingham, UK, pp. 1−35.

Workneh, A., Ephrem, G., Markos, T., Yetnayet, M. & Rege, J. E. O. (2004). Current states of knowledge on characterization of farm Animal Genetic Resource in Ethiopia. In: Proceeding of the 11th Annual Conference of Ethiopian Society of Animal Production (ESAP). August 28−30, 2004. Addis Ababa, Ethiopia, pp. 1−21.

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Published

2023-12-30

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