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家畜饲养者可以从保护遗传学中学到什么,反之亦然?

What can livestock breeders learn from conservation genetics and vice versa?

机构信息

Section of Biology and Environmental Science, Department of Chemistry and Bioscience, Aalborg University Aalborg, Denmark.

Department of Zoology and Department of Genetics, Bio21 Institute, The University of Melbourne Melbourne, VIC, Australia.

出版信息

Front Genet. 2015 Feb 10;6:38. doi: 10.3389/fgene.2015.00038. eCollection 2015.

Abstract

The management of livestock breeds and threatened natural population share common challenges, including small effective population sizes, high risk of inbreeding, and the potential benefits and costs associated with mixing disparate gene pools. Here, we consider what has been learnt about these issues, the ways in which the knowledge gained from one area might be applied to the other, and the potential of genomics to provide new insights. Although there are key differences stemming from the importance of artificial versus natural selection and the decreased level of environmental heterogeneity experienced by many livestock populations, we suspect that information from genetic rescue in natural populations could be usefully applied to livestock. This includes an increased emphasis on maintaining substantial population sizes at the expense of genetic uniqueness in ensuring future adaptability, and on emphasizing the way that environmental changes can influence the relative fitness of deleterious alleles and genotypes in small populations. We also suspect that information gained from cross-breeding and the maintenance of unique breeds will be increasingly important for the preservation of genetic variation in small natural populations. In particular, selected genes identified in domestic populations provide genetic markers for exploring adaptive evolution in threatened natural populations. Genomic technologies in the two disciplines will be important in the future in realizing genetic gains in livestock and maximizing adaptive capacity in wildlife, and particularly in understanding how parts of the genome may respond differently when exposed to population processes and selection.

摘要

家畜品种管理和受威胁自然种群的管理面临着共同的挑战,包括有效种群规模小、近交风险高,以及混合不同基因库的潜在利益和成本。在这里,我们考虑了这些问题的研究进展,从一个领域获得的知识如何应用于另一个领域,以及基因组学提供新见解的潜力。尽管由于人工选择与自然选择的重要性不同,以及许多家畜种群所经历的环境异质性水平降低,存在着关键的差异,但我们怀疑从自然种群的遗传拯救中获得的信息可以被有效地应用于家畜。这包括更加注重以牺牲遗传独特性为代价来维持大量的种群规模,以确保未来的适应性,以及强调环境变化如何影响小种群中有害等位基因和基因型的相对适应性。我们还怀疑,从杂交和独特品种的维持中获得的信息,对于小自然种群中遗传变异的保存将变得越来越重要。特别是,在家畜群体中鉴定的选择基因提供了遗传标记,可用于探索受威胁的自然种群中的适应性进化。这两个领域的基因组技术在未来对于实现家畜的遗传增益和最大限度地提高野生动物的适应能力将非常重要,特别是对于理解基因组的某些部分在暴露于种群过程和选择时可能会有何不同反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e48a/4322732/3d635c07ebb6/fgene-06-00038-g001.jpg

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