首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Chromosomal locus rearrangements are a rapid response to formation of the allotetraploid Arabidopsis suecica genome.
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Chromosomal locus rearrangements are a rapid response to formation of the allotetraploid Arabidopsis suecica genome.

机译:染色体基因座重排是对异源四倍体拟南芥suecica基因组形成的快速反应。

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摘要

Allopolyploidy is a significant evolutionary process, resulting in new species with diploid or greater chromosome complements derived from two or more progenitor species. We examined the chromosomal consequences of genomic merger in Arabidopsis suecica, the allotetraploid hybrid of Arabidopsis thaliana and Arabidopsis arenosa. Fluorescence in situ hybridization with centromere, nucleolus organizer region (NOR), and 5S rRNA gene probes reveals the expected numbers of progenitor chromosomes in natural A. suecica, but one pair of A. thaliana NORs and one pair of A. arenosa-derived 5S gene loci are missing. Similarly, in newly formed synthetic A. suecica-like allotetraploids, pairs of A. thaliana NORs are gained de novo, lost, and/or transposed to A. arenosa chromosomes, with genotypic differences apparent between F(3) siblings of the same F(2) parent and between independent lines. Likewise, pairs of A. arenosa 5S genes are lost and novel linkages between 5S loci and NORs arise in synthetic allotetraploids. By contrast, the expected numbers of A. arenosa-derived NORs and A. thaliana-derived 5S loci are found in both natural and synthetic A. suecica. Collectively, these observations suggest that some, but not all, loci are unstable in newly formed A. suecica allotetraploids and can participate in a variety of alternative rearrangements, some of which resemble chromosomal changes found in nature.
机译:异源多倍体是一个重要的进化过程,导致新物种具有来自两个或多个祖先物种的二倍体或更大的染色体补体。我们检查了拟南芥suecica,拟南芥和拟南芥的异源四倍体杂种的基因组合并的染色体后果。与着丝粒,核仁组织区(NOR)和5S rRNA基因探针的荧光原位杂交揭示了天然拟南芥中预期的祖染色体数目,但是一对拟南芥NORs和一对源自拟南芥的5S基因位点缺失。类似地,在新形成的合成拟南芥样异源四倍体中,从新获得,丢失和/或转置到槟榔染色体的成对拟南芥NORs,具有相同F(3)兄弟姐妹之间的基因型差异明显(2)父级和独立行之间。同样地,在合成的异源四倍体中,成对的槟榔土壤杆菌5S基因丢失,并且5S基因座和NOR之间出现新的联系。相比之下,在天然和合成的拟南芥中均发现了预期的来自沙蒿的NORs和来自拟南芥的5S基因座。总体而言,这些观察结果表明,在新形成的拟南芥种子异源四倍体中,有一些(但不是全部)基因座不稳定,并且可以参与多种替代性重排,其中某些重排类似于自然界中的染色体变化。

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