Optimization of alternative breeding schemes for the genetic improvement of common Tigray highland sheep in northern Ethiopia

Author:

Haileselassie Kiflay Welday,Kebede Solomon Abgaz,Letta Mengistu Ugre,GebreMichael Solomon Gizaw

Abstract

Abstract Background Genetic improvement is one of the major means to enhance the productivity of livestock, and well-designed animal genetic improvement schemes are necessary to achieve genetic gains. The objective of the current study was to design an alternative breeding program to improve the productivity of common Tigray highland sheep. Two village- and two central nucleus-based breeding schemes were simulated and evaluated in terms of genetic gain, bio-economic efficiency and operational feasibility. Methods Four breeding schemes were simulated: scheme 1, a one-tier cooperative village-based breeding scheme, scheme 2, a two-tier cooperative village breeding scheme (dispersed village-based nuclei scheme), scheme 3, a central open nucleus-based scheme with 5% nucleus size; and scheme 4, a three-tier breeding schemes (central open nucleus-based linked with multiplier units). Simulation analyses were performed using the ZPLAN computer program, which is based on a deterministic approach to estimate genetic and economic gains in the breeding programs. Results Between the two village-based breeding schemes, scheme 2 showed higher genetic gain and economic efficiency in the breeding traits analysed than scheme 1. The central nuclei schemes were more efficient than the village breeding schemes. Scheme 3 was the most efficient with a genetic gain in the breeding objective of US $ 1.03 and a profit of US $ 2.73/ewe/year, but operationally it is also the most difficult to implement as it requires a big central nucleus. A central nucleus linked with the village-based nuclei would be a feasible option to overcome the operational difficulties of the conventional central nucleus schemes. If a village-based breeding program is considered it should be the first step in most low-input systems. In this case, scheme 2 is the most efficient. Conclusions With some support from the public sector at the outset and a strong collaboration among the stakeholders including smallholders, scheme 4 could lead to substantial genetic gains in the common Tigray highland sheep breed within its habitat that covers large areas of the Tigray region. Therefore, we recommend a long-term breeding program which should include cross-breeding, genomic selection, updated estimates of genetic and economic values for the common Tigray highland sheep breed.

Funder

Ethiopian Ministry of Education

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Animal Science and Zoology,General Medicine,Ecology, Evolution, Behavior and Systematics

Reference37 articles.

1. Gizaw S, Rischkowsky B, Valle-Zarate A, Haile A, van Arendonk JAM, Mwai AO, et al. Breeding programs for smallholder sheep farming systems: I. Evaluation of alternative designs of breeding schemes. J Anim Breed Genet. 2014;131:350–7.

2. Wurzinger M, Solkner J, Iñiguez L. Important aspects and limitations in considering community-based breeding programs for low-input smallholder livestock systems. Small Rumin Res. 2011;98:170–5.

3. Gizaw S, Komen H, van Arendonk JAM. Optimal village breeding schemes under smallholder sheep farming systems. Livest Sci. 2009;124:82–8.

4. Mirkena T. Identifying breeding objectives of smallholders/pastoralists and optimizing community-based breeding programs for adapted sheep breeds in Ethiopia. Ph.D. thesis, University of Natural Resources and Life Sciences. 2010.

5. Mueller JP. Experiences with breeding structures for genetic improvement of small ruminants. In: Proceedings of the 5th all Africa conference on animal production, 25–28 October 2010, Addis Ababa. 2010.

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