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A molecular cytogenetic study of chromosome evolution in chimpanzee.

机译:黑猩猩染色体进化的分子细胞遗传学研究。

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摘要

We applied multitude multicolor banding (mMCB) in combination with a novel FISH DNA probe set including subcentromeric, subtelomeric and whole chromosome painting probes (subCTM) to characterize a Pan paniscus (PPA) cell line. These powerful techniques allowed us to refine the breakpoints of a pericentric inversion on chimpanzee chromosome 4, and discovered a novel cryptic pericentric inversion in chimpanzee chromosome 11. mMCB provided a starting point for mapping and high resolution analysis of breakpoints on PPA chromosome 4, which are within a long terminal repeat (LTR) and surrounded by segmental duplications, as well as the integration/expansion sites of the interstitial heterochromatin on chimpanzee chromosomes 6 and 14. Moreover, we found evidence at hand for different types of heterochromatin in the chimpanzee genome. Finally, shedding new light on the human/chimpanzee speciation, karyotypes of three members of the genus Pan were studied by mMCB and no cytogenetic differences were found although the phylogenetic distance between these subspecies is suggested to be 2.5 million years.
机译:我们将多种多色条带(mMCB)与新颖的FISH DNA探针组结合使用,该探针组包括着丝粒,亚端粒和整个染色体绘画探针(subCTM),以表征Pan Paniscus(PPA)细胞系。这些强大的技术使我们能够完善黑猩猩第4号染色体上的中心点倒转的断点,并发现了黑猩猩11号染色体上的新型隐性围绕点倒置。mMCB为映射和高分辨率分析PPA第4号染色体上的断点提供了起点。在一个长的末端重复序列(LTR)中,周围有节段重复,以及黑猩猩第6和14号染色体上的间质异染色质的整合/扩展位点。此外,我们发现了黑猩猩基因组中不同类型异染色质的证据。最后,为人类/黑猩猩的物种形成提供了新的思路,通过mMCB研究了Pan属的三个成员的核型,尽管这些亚种之间的系统发育距离被认为是250万年,但没有发现细胞遗传学差异。

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