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在两种嘉鱼物种形成过程中,检测祖先多态性短散在重复元件(SINEs)在种群中朝着固定或丢失方向的持续分选情况。

Detection of the ongoing sorting of ancestrally polymorphic SINEs toward fixation or loss in populations of two species of charr during speciation.

作者信息

Hamada M, Takasaki N, Reist J D, DeCicco A L, Goto A, Okada N

机构信息

Faculty of Bioscience and Biotechnology, Tokyo Institute of Technology, Midori-ku, Yokohama 226-8501, Japan.

出版信息

Genetics. 1998 Sep;150(1):301-11. doi: 10.1093/genetics/150.1.301.

Abstract

The FokI family of short interspersed repetitive elements (SINEs) has been found only in the genomes of charr fishes (genus Salvelinus). In an analysis of the insertion of FokI SINEs using PCR, we characterized six loci at which FokI SINEs have been inserted into the genomes of Salvelinus alpinus (Arctic charr) and/or S. malma (Dolly Varden). An analysis of one locus (Fok-223) suggested that a sister relationship exists between S. alpinus and S. malma and the SINE at this locus might have been inserted in a common ancestor of these two species, being fixed in all extant populations examined. By contrast, SINEs at two other loci (Fok-211 and Fok-206) were present specifically in the genome of S. alpinus, with polymorphism among populations of this species. Moreover, the presence or absence of the SINEs of the other three loci (Fok-214, Fok-217, and Fok-600) varied among populations of these two species. The most plausible interpretation of this result is that SINEs, which were ancestrally polymorphic in the genome of a common ancestor of these two species, are involved in an ongoing process of differential sorting and subsequent fixation in the various populations of each species.

摘要

短散在重复元件(SINEs)的FokI家族仅在红点鲑属鱼类(Salvelinus属)的基因组中被发现。在一项使用聚合酶链式反应(PCR)对FokI SINEs插入情况的分析中,我们鉴定了六个位点,FokI SINEs已插入到高山红点鲑(北极红点鲑)和/或玛红点鲑(多莉红点鲑)的基因组中。对其中一个位点(Fok - 223)的分析表明,高山红点鲑和玛红点鲑之间存在姐妹关系,并且该位点的SINE可能已插入到这两个物种的共同祖先中,并在所有被检测的现存种群中固定下来。相比之下,另外两个位点(Fok - 211和Fok - 206)的SINEs仅特异性地存在于高山红点鲑的基因组中,且在该物种的不同种群间存在多态性。此外,另外三个位点(Fok - 214、Fok - 217和Fok - 600)的SINEs在这两个物种的不同种群中的存在情况各异。对这一结果最合理的解释是,SINEs在这两个物种的共同祖先基因组中原本是多态性的,它们参与了每个物种不同种群中正在进行的差异分选及随后的固定过程。

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