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达尔文的奇想再修正:对鸽子品种基因组构成的更新理解。

Darwin's Fancy Revised: An Updated Understanding of the Genomic Constitution of Pigeon Breeds.

机构信息

Natural History Museum of Denmark, Faculty of Science, University of Copenhagen, Denmark.

The GLOBE Institute, Faculty of Health and Biomedical Sciences, University of Copenhagen, Denmark.

出版信息

Genome Biol Evol. 2020 Mar 1;12(3):136-150. doi: 10.1093/gbe/evaa027.

Abstract

Through its long history of artificial selection, the rock pigeon (Columba livia Gmelin 1789) was forged into a large number of domestic breeds. The incredible amount of phenotypic diversity exhibited in these breeds has long held the fascination of scholars, particularly those interested in biological inheritance and evolution. However, exploiting them as a model system is challenging, as unlike with many other domestic species, few reliable records exist about the origins of, and relationships between, each of the breeds. Therefore, in order to broaden our understanding of the complex evolutionary relationships among pigeon breeds, we generated genome-wide data by performing the genotyping-by-sequencing (GBS) method on close to 200 domestic individuals representing over 60 breeds. We analyzed these GBS data alongside previously published whole-genome sequencing data, and this combined analysis allowed us to conduct the most extensive phylogenetic analysis of the group, including two feral pigeons and one outgroup. We improve previous phylogenies, find considerable population structure across the different breeds, and identify unreported interbreed admixture events. Despite the reduced number of loci relative to whole-genome sequencing, we demonstrate that GBS data provide sufficient analytical power to investigate intertwined evolutionary relationships, such as those that are characteristic of animal domestic breeds. Thus, we argue that future studies should consider sequencing methods akin to the GBS approach as an optimal cost-effective approach for addressing complex phylogenies.

摘要

经过长期的人工选择,岩鸽(Columba livia Gmelin 1789)被培育成了大量的家鸽品种。这些品种表现出的令人难以置信的表型多样性,长期以来一直吸引着学者们的关注,尤其是那些对生物遗传和进化感兴趣的学者。然而,将其作为一个模式系统进行研究具有挑战性,因为与许多其他家养物种不同,很少有可靠的记录可以说明每个品种的起源和相互之间的关系。因此,为了更广泛地了解鸽子品种之间复杂的进化关系,我们将近 200 只代表 60 多个品种的家养个体进行了测序(GBS)方法的基因组范围数据生成。我们分析了这些 GBS 数据以及之前发表的全基因组测序数据,这种组合分析使我们能够对该群体进行最广泛的系统发育分析,包括两只野鸽和一只外群。我们改进了之前的系统发育树,发现不同品种之间存在相当大的种群结构,并确定了未报告的品种间杂交事件。尽管与全基因组测序相比,GBS 数据的标记数量较少,但我们证明 GBS 数据提供了足够的分析能力来研究相互交织的进化关系,例如动物家鸽品种所特有的那些关系。因此,我们认为未来的研究应该考虑类似于 GBS 方法的测序方法,作为解决复杂系统发育的一种具有成本效益的最佳方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c4b/7144551/0f1eb62c9c2d/evaa027f1.jpg

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