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染色体描绘揭示犬科(食肉目)中狗和狐狸家族的系统发育基因组学。

Phylogenomics of the dog and fox family (Canidae, Carnivora) revealed by chromosome painting.

作者信息

Graphodatsky Alexander S, Perelman Polina L, Sokolovskaya Natalya V, Beklemisheva Violetta R, Serdukova Natalya A, Dobigny Gauthier, O'Brien Stephen J, Ferguson-Smith Malcolm A, Yang Fengtang

机构信息

Institute of Cytology and Genetics, SB RAS, Novosibirsk, 630090, Russia.

出版信息

Chromosome Res. 2008;16(1):129-43. doi: 10.1007/s10577-007-1203-5.

Abstract

Canid species (dogs and foxes) have highly rearranged karyotypes and thus represent a challenge for conventional comparative cytogenetic studies. Among them, the domestic dog is one of the best-mapped species in mammals, constituting an ideal reference genome for comparative genomic study. Here we report the results of genome-wide comparative mapping of dog chromosome-specific probes onto chromosomes of the dhole, fennec fox, and gray fox, as well as the mapping of red fox chromosome-specific probes onto chromosomes of the corsac fox. We also present an integrated comparative chromosome map between the species studied here and all canids studied previously. The integrated map demonstrates an extensive conservation of whole chromosome arms across different canid species. In addition, we have generated a comprehensive genome phylogeny for the Canidae on the basis of the chromosome rearrangements revealed by comparative painting. This genome phylogeny has provided new insights into the karyotypic relationships among the canids. Our results, together with published data, allow the formulation of a likely Canidae ancestral karyotype (CAK, 2n = 82), and reveal that at least 6-24 chromosomal fission/fusion events are needed to convert the CAK karyotype to that of the modern canids.

摘要

犬科动物(狗和狐狸)具有高度重排的核型,因此对传统的比较细胞遗传学研究构成挑战。其中,家犬是哺乳动物中基因图谱绘制得最好的物种之一,是比较基因组研究的理想参考基因组。在此,我们报告了犬染色体特异性探针在豺、耳廓狐和灰狐染色体上的全基因组比较定位结果,以及赤狐染色体特异性探针在沙狐染色体上的定位结果。我们还展示了在此研究的物种与先前研究的所有犬科动物之间的综合比较染色体图谱。该综合图谱表明,不同犬科物种的整条染色体臂存在广泛的保守性。此外,我们基于比较染色体描绘揭示的染色体重排,构建了犬科动物的综合基因组系统发育树。这个基因组系统发育树为犬科动物的核型关系提供了新的见解。我们的结果与已发表的数据一起,使得有可能制定出一种可能的犬科祖先核型(CAK,2n = 82),并揭示至少需要6 - 24次染色体裂变/融合事件才能将CAK核型转变为现代犬科动物的核型。

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