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关于纳马奎南非小家鼠(Aethomys namaquensis A. Smith,啮齿目:鼠科)核型进化过程中八个串联融合和五个着丝粒融合的证据。

Evidence for eight tandem and five centric fusions in the evolution of the karyotype of Aethomys namaquensis A. Smith (Rodentia: Muridae).

作者信息

Baker R J, Qumsiyeh M B, Rautenbach I L

机构信息

Department of Biological Sciences and the Museum, Texas Tech University, Lubbock 79409.

出版信息

Genetica. 1988 Jun 30;76(3):161-9. doi: 10.1007/BF00140220.

Abstract

G- and C-banded chromosomes of Aethomys namaquensis (2n = 24), A. chrysophilus (2n = 44), and Praomys coucha (2n = 36) are compared and contrasted with published material on Australian Muridae and North American Sigmodontidae. Direction and types of chromosomal rearrangements are established using cladistic methodology. An acrocentric morphology for chromosomes 5, 14, 15 and 20 (numbering system from Peromyscus) are proposed as primitive for the common ancestor of the Muridae and Sigmodontidae rodent lineages. Reduced diploid number of Aethomys namaquensis is derived by eight tandem and five centric fusions since divergence from the common ancestor with A. chrysophilus. The two species of Aethomys share one derived metacentric chromosome that distinguishes them from Praomys. Praomys has unique chromosomes which can be derived from the proposed primitive condition by five centric fusions and five pericentric inversions. It is concluded that karyotypic orthoselection for tandem and centric fusions is best explained by cellular or biochemical mechanisms rather than variation in population characteristics.

摘要

将纳马奎粗尾鼠(2n = 24)、金背粗尾鼠(2n = 44)和库氏柔毛鼠(2n = 36)的G带和C带染色体与已发表的关于澳大利亚鼠科动物和北美稻鼠科动物的资料进行了比较和对比。使用分支系统学方法确定了染色体重排的方向和类型。提出将5号、14号、15号和20号染色体(根据鹿鼠的编号系统)的近端着丝粒形态作为鼠科和稻鼠科啮齿动物谱系共同祖先的原始形态。自与金背粗尾鼠从共同祖先分化以来,纳马奎粗尾鼠减少的二倍体数目是通过八次串联融合和五次着丝粒融合形成的。粗尾鼠属的两个物种共有一条衍生的中着丝粒染色体,这使它们与柔毛鼠区分开来。柔毛鼠具有独特的染色体,这些染色体可通过五次着丝粒融合和五次臂间倒位从所提出的原始状态衍生而来。得出的结论是,串联融合和着丝粒融合的核型正向选择最好用细胞或生化机制来解释,而不是用种群特征的变异来解释。

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