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A Genetic Map of Peromyscus with Chromosomal Assignment of Linkage Groups (A Peromyscus Genetic Map)

机译:具有连锁群染色体分配的Peromyscus遗传图谱(Peromyscus遗传图谱)

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摘要

The rodent genus Peromyscus is the most numerous and species rich mammalian group in North America. The naturally occurring diversity within this genus allows opportunities to investigate the genetic basis of adaptation, monogamy, behavioral and physiological phenotypes, growth control, genomic imprinting, and disease processes. Increased genomic resources including a high quality genetic map are needed to capitalize on these opportunities. We produced interspecific hybrids between the prairie deer mouse (Peromyscus maniculatus bairdii) and the oldfield mouse (Peromyscus polionotus) and scored meiotic recombination events in backcross progeny. A genetic map was contructed by genotyping of backcross progeny at 185 gene-based and 155 microsatellite markers representing all autosomes and the X chromosome. Comparison of the constructed genetic map with the molecular maps of Mus and Rattus and consideration of previous results from interspecific reciprocal whole chromosome painting allowed most linkage groups to be unambiguously assigned to specific Peromyscus chromosomes. Based on genomic comparisons, this Peromyscus genetic map covers approximately 83% of the Rattus genome and 79% of the Mus genome. This map supports previous results that the Peromyscus genome is more similar to Rattus than Mus. For example, coverage of the 20 Rattus autosomes and the X chromosome is accomplished with only 28 segments of the Peromyscus map, but coverage of the 19 Mus autosomes and the X chromosome requires 40 chromosomal segments of the Peromyscus map. Furthermore, a single Peromyscus linkage group corresponds to about 91% of the rat and only 76% of the mouse X chromosomes.
机译:啮齿动物属Peromyscus是北美地区数量最多,种类最多的哺乳动物。该属中自然发生的多样性使人们有机会研究适应性,一夫一妻制,行为和生理表型,生长控制,基因组印记和疾病过程的遗传基础。为了利用这些机会,需要增加基因组资源,包括高质量的遗传图谱。我们在草原鹿小鼠(Peromyscus maniculatus bairdii)和旧田鼠(Peromyscus polionotus)之间产生了种间杂种,并在回交后代中记下了减数分裂重组事件。通过回交子代在185个基于基因和155个微卫星标记的基因分型来构建遗传图谱,这些标记代表所有常染色体和X染色体。将构建的遗传图谱与Mus和Rattus的分子图谱进行比较,并考虑种间相互全染色体画之前的结果,可以将大多数连锁基团明确分配给特定的Peromyscus染色体。根据基因组比较,此Peromyscus遗传图谱涵盖了Rattus基因组的约83%和Mus基因组的79%。该图支持以前的结果,即Peromyscus基因组与Rattus的相似性大于Mus的相似性。例如,只用28个Peromyscus图谱的片段完成了20个Rattus常染色体和X染色体的覆盖,但是19个Mus常染色体和X染色体的覆盖需要Peromyscus图的40个染色体片段。此外,单个 Peromyscus 连锁组对应于约91%的大鼠和仅76%的小鼠X染色体。

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