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埃塞俄比亚北部六个牛品种的遗传多样性分析及保护优先级

Analysis of genetic diversity and conservation priorities for six north Ethiopian cattle breeds.

作者信息

Zerabruk M, Bennewitz J, Kantanen J, Olsaker I, Vangen O

机构信息

Department of Animal and Aquacultural Sciences, Norwegian University of Life Sciences, Aas, Norway.

出版信息

J Anim Breed Genet. 2007 Aug;124(4):236-41. doi: 10.1111/j.1439-0388.2007.00660.x.

Abstract

Genetic diversity and conservation potential of six indigenous cattle breeds of north Ethiopia was analysed based on 20 microsatellite markers using core set methods. Expected future diversity (assuming assigned extinction probabilities are valid for the next 20-50 years) were 0.988+/-0.011 and 0.980+/-0.010 with expected loss of diversity estimated at 0.02% and 0.74% of current level for the Maximum Variance Total (MVT) and Maximum Variance Offspring (MVO) core sets, respectively. Even though all breeds have contributed to current diversity levels, the Afar and Abergelle breeds only contributed 51% and 62% to the MVT and MVO core sets, respectively, while the Raya breed contributed only 6% and 1.5% to the MVT and MVO core set diversities, respectively. Moreover, prioritizing the six north Ethiopian cattle breeds using the conservation potential obtained from the MVT core set method seems reasonable considering the origin and migration histories of the breeds. Our results suggest that the total current genetic diversity of these breeds can be sufficiently maintained by designing a conservation strategy based on conservation potential of each breed from the MVT core set so that priority is given to lowering the extinction probabilities of breeds with high conservation potential to zero.

摘要

基于20个微卫星标记,采用核心集方法分析了埃塞俄比亚北部六个本土牛品种的遗传多样性和保护潜力。预期未来的多样性(假设指定的灭绝概率在未来20 - 50年内有效)对于最大方差总数(MVT)核心集和最大方差后代(MVO)核心集分别为0.988±0.011和0.980±0.010,预计多样性损失分别为当前水平的0.02%和0.74%。尽管所有品种都对当前的多样性水平有所贡献,但阿法尔和阿贝盖尔品种对MVT和MVO核心集的贡献分别仅为51%和62%,而拉亚品种对MVT和MVO核心集多样性的贡献分别仅为6%和1.5%。此外,考虑到这些品种的起源和迁徙历史,使用从MVT核心集方法获得的保护潜力对埃塞俄比亚北部的六个牛品种进行优先排序似乎是合理的。我们的结果表明,通过基于MVT核心集中每个品种的保护潜力设计保护策略,可以充分维持这些品种当前的总遗传多样性,以便优先将具有高保护潜力品种的灭绝概率降至零。

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