首页> 外文期刊>Mammalian genome: official journal of the International Mammalian Genome Society >An updated genetic map of Emphasis Type='Italic'>Peromyscus/Emphasis> with chromosomal assignment of linkage groups
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An updated genetic map of Emphasis Type='Italic'>Peromyscus/Emphasis> with chromosomal assignment of linkage groups

机译:更新的&强调=“斜体”>细胞菌& /强调>具有联动组的染色体分配

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Species across the rodent genus Peromyscus have become prominent models for studying diverse mechanistic and evolutionary processes, including chromosome evolution, infectious disease transmission and human health, ecological adaptation, coat color variation, and parental care. Supporting such diverse research programs has been the development of genetic and genomic resources for species within this genus, including genome data, interspecific chromosome homologies, and a recently developed genetic map. Based on interspecific hybrids between the deer mouse ( Peromyscus maniculatus bairdii ) and the old-field, or beach, mouse ( Peromyscus polionotus ) and backcross progeny to Peromyscus maniculatus , a linkage map was developed based on 190 genes and 141 microsatellite loci. However, resolution of several linkage groups with respect to chromosome assignment was lacking and four chromosomes (8, 16, 20, and 21) were not clearly delineated with linkage data alone. The recent development of a high-density map for Peromyscus proved ineffective in resolving chromosome linkage for these four chromosomes. Herein we present an updated linkage map for Peromyscus maniculatus , including linkage group-chromosome assignments, using fluorescence in situ hybridization mapping of BACs and whole chromosome paints. We resolve the previously conflicting chromosome assignment of linkage groups to Chromosomes 8, 16, 20, and 21, and confirm the assignment of linkage groups to Chromosomes 18 and 22. This updated linkage map with validated chromosome assignment provides a solid foundation for chromosome nomenclature for this species.
机译:患有啮齿动物属植物属植物的物种已经成为研究各种机械和进化过程的突出模型,包括染色体演化,传染病传播和人类健康,生态适应,涂层颜色变异和父母护理。支持这种多样化的研究计划一直是该属遗传和基因组资源的发展,包括基因组数据,种间染色体同源物和最近发达的遗传图谱。基于鹿小鼠(Peromyscus Maniculatus Bairdii)和旧场,或海滩,小鼠(Peromyscus polionotus)和回复后代对Peromyscus maniculatus之间的间隙杂种,基于190个基因和141微卫星基因座开发了联系地图。然而,缺乏关于染色体分配的几个连杆基团的分辨率,并且仅通过单独的联系数据清楚地描绘了四种染色体(8,16,20和21)。最近的高密度图的开发对于蠕动症来证明在解决这四种染色体的染色体联动方面证明是无效的。在此我们提出了一种更新的联系地图,用于Peromyscus maniculatus,包括链接组 - 染色体分配,使用Bacs和全染色体涂料的原位杂交映射。我们解析以前冲突的染色体分配链接基团到染色体8,16,20和21,并确认将链接基团分配给染色体18和22.这种具有验证染色体作业的更新的联系地图为染色体染色体染色体提供了坚实的基础。这个物种。

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