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重新分配的美洲水貂(Neovison vison)图谱最适合全基因组研究。

A re-assigned American mink (Neovison vison) map optimal for genome-wide studies.

机构信息

University of Copenhagen, The Faculty of Life Sciences, Department of Basic Animaland Veterinary Sciences, Division of Animal Genetics and Bioinformatics, Groennegaardsvej 3, Frederiksberg C, Denmark.

出版信息

Gene. 2012 Dec 10;511(1):66-72. doi: 10.1016/j.gene.2012.08.033. Epub 2012 Sep 12.

Abstract

Our previously published second generation genetic map for the American mink (Neovison vison) has been used and redesigned in its best for genome-wide studies with maximum of efficiency. A number of 114 selected markers, including 33 newly developed microsatellite markers from the CHORI-231 mink Bacterial Artificial Chromosome (BAC) library, have been genotyped in a two generation population composed of 1200 individuals. The outcome reassigns the position of some markers on the chromosomes and it produces a more reliable map with a convenient distance between markers. A total of 104 markers mapped to 14 linkage groups corresponding to the mink autosomes. Six markers are unlinked and four markers are allocated to the X chromosome by homology but no linkage was detected. The sex-average linkage map spans 1192 centiMorgans (cM) with an average intermarker distance of 11.4cM and 1648cM when the ends of the linkage groups and the autosomal unlinked markers are added. Sex-specific genetic linkage maps were also generated. The male sex-specific map had a total length of 1014.6cM between the linked markers and an average inter-marker interval of 9.7cM. The female map has a corresponding length of 1378.6cM and an average inter-marker interval of 13.3cM. The study is complemented with additional anchorage for most of the chromosomes of the map by BAC in situ hybridization with clones containing microsatellites strategically selected from the various parts of the genome. This map provides an improved tool for genetic mapping and comparative genomics in mink, also useful for the future assembly of the mink genome sequence when this will be taken forward.

摘要

我们之前发表的第二代美国水貂(Neovison vison)遗传图谱已被用于和重新设计,以在最大效率下进行全基因组研究。从 CHORI-231 水貂细菌人工染色体(BAC)文库中选择了 114 个标记,包括 33 个新开发的微卫星标记,在由 1200 个个体组成的两代群体中进行了基因分型。结果重新分配了染色体上一些标记的位置,并产生了一个更可靠的图谱,标记之间的距离更方便。共有 104 个标记映射到 14 个连锁群,对应于水貂的常染色体。6 个标记不连锁,4 个标记通过同源性分配到 X 染色体,但没有检测到连锁。性平均连锁图谱跨越 1192 个厘摩(cM),平均标记间距离为 11.4cM,当连锁群的末端和常染色体不连锁标记加入时,距离为 1648cM。还生成了性特异性遗传连锁图谱。雄性性特异性图谱在连锁标记之间的总长度为 1014.6cM,平均标记间间隔为 9.7cM。女性图谱具有相应的长度 1378.6cM 和平均标记间间隔 13.3cM。该研究还通过 BAC 原位杂交用包含从基因组不同部分有策略地选择的微卫星的克隆对图谱的大多数染色体进行了额外的锚定。该图谱为水貂的遗传作图和比较基因组学提供了一个改进的工具,也为未来水貂基因组序列的组装提供了有用的工具,当水貂基因组序列被组装时。

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